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Kocarnik JM, Compton K, Dean FE, Fu W, Gaw BL, Harvey JD, Henrikson HJ, Lu D, Pennini A, Xu R, Ababneh E, Abbasi-Kangevari M, Abbastabar H, Abd-Elsalam SM, Abdoli A, Abedi A, Abidi H, Abolhassani H, Adedeji IA, Adnani QES, Advani SM, Afzal MS, Aghaali M, Ahinkorah BO, Ahmad S, Ahmad T, Ahmadi A, Ahmadi S, Ahmed Rashid T, Ahmed Salih Y, Akalu GT, Aklilu A, Akram T, Akunna CJ, Al Hamad H, Alahdab F, Al-Aly Z, Ali S, Alimohamadi Y, Alipour V, Aljunid SM, Alkhayyat M, Almasi-Hashiani A, Almasri NA, Al-Maweri SAA, Almustanyir S, Alonso N, Alvis-Guzman N, Amu H, Anbesu EW, Ancuceanu R, Ansari F, Ansari-Moghaddam A, Antwi MH, Anvari D, Anyasodor AE, Aqeel M, Arabloo J, Arab-Zozani M, Aremu O, Ariffin H, Aripov T, Arshad M, Artaman A, Arulappan J, Asemi Z, Asghari Jafarabadi M, Ashraf T, Atorkey P, Aujayeb A, Ausloos M, Awedew AF, Ayala Quintanilla BP, Ayenew T, Azab MA, Azadnajafabad S, Azari Jafari A, Azarian G, Azzam AY, Badiye AD, Bahadory S, Baig AA, Baker JL, Balakrishnan S, Banach M, Bärnighausen TW, Barone-Adesi F, Barra F, Barrow A, Behzadifar M, Belgaumi UI, Bezabhe WMM, Bezabih YM, Bhagat DS, Bhagavathula AS, Bhardwaj N, Bhardwaj P, Bhaskar S, Bhattacharyya K, Bhojaraja VS, et alKocarnik JM, Compton K, Dean FE, Fu W, Gaw BL, Harvey JD, Henrikson HJ, Lu D, Pennini A, Xu R, Ababneh E, Abbasi-Kangevari M, Abbastabar H, Abd-Elsalam SM, Abdoli A, Abedi A, Abidi H, Abolhassani H, Adedeji IA, Adnani QES, Advani SM, Afzal MS, Aghaali M, Ahinkorah BO, Ahmad S, Ahmad T, Ahmadi A, Ahmadi S, Ahmed Rashid T, Ahmed Salih Y, Akalu GT, Aklilu A, Akram T, Akunna CJ, Al Hamad H, Alahdab F, Al-Aly Z, Ali S, Alimohamadi Y, Alipour V, Aljunid SM, Alkhayyat M, Almasi-Hashiani A, Almasri NA, Al-Maweri SAA, Almustanyir S, Alonso N, Alvis-Guzman N, Amu H, Anbesu EW, Ancuceanu R, Ansari F, Ansari-Moghaddam A, Antwi MH, Anvari D, Anyasodor AE, Aqeel M, Arabloo J, Arab-Zozani M, Aremu O, Ariffin H, Aripov T, Arshad M, Artaman A, Arulappan J, Asemi Z, Asghari Jafarabadi M, Ashraf T, Atorkey P, Aujayeb A, Ausloos M, Awedew AF, Ayala Quintanilla BP, Ayenew T, Azab MA, Azadnajafabad S, Azari Jafari A, Azarian G, Azzam AY, Badiye AD, Bahadory S, Baig AA, Baker JL, Balakrishnan S, Banach M, Bärnighausen TW, Barone-Adesi F, Barra F, Barrow A, Behzadifar M, Belgaumi UI, Bezabhe WMM, Bezabih YM, Bhagat DS, Bhagavathula AS, Bhardwaj N, Bhardwaj P, Bhaskar S, Bhattacharyya K, Bhojaraja VS, Bibi S, Bijani A, Biondi A, Bisignano C, Bjørge T, Bleyer A, Blyuss O, Bolarinwa OA, Bolla SR, Braithwaite D, Brar A, Brenner H, Bustamante-Teixeira MT, Butt NS, Butt ZA, Caetano Dos Santos FL, Cao Y, Carreras G, Catalá-López F, Cembranel F, Cerin E, Cernigliaro A, Chakinala RC, Chattu SK, Chattu VK, Chaturvedi P, Chimed-Ochir O, Cho DY, Christopher DJ, Chu DT, Chung MT, Conde J, Cortés S, Cortesi PA, Costa VM, Cunha AR, Dadras O, Dagnew AB, Dahlawi SMA, Dai X, Dandona L, Dandona R, Darwesh AM, das Neves J, De la Hoz FP, Demis AB, Denova-Gutiérrez E, Dhamnetiya D, Dhimal ML, Dhimal M, Dianatinasab M, Diaz D, Djalalinia S, Do HP, Doaei S, Dorostkar F, Dos Santos Figueiredo FW, Driscoll TR, Ebrahimi H, Eftekharzadeh S, El Tantawi M, El-Abid H, Elbarazi I, Elhabashy HR, Elhadi M, El-Jaafary SI, Eshrati B, Eskandarieh S, Esmaeilzadeh F, Etemadi A, Ezzikouri S, Faisaluddin M, Faraon EJA, Fares J, Farzadfar F, Feroze AH, Ferrero S, Ferro Desideri L, Filip I, Fischer F, Fisher JL, Foroutan M, Fukumoto T, Gaal PA, Gad MM, Gadanya MA, Gallus S, Gaspar Fonseca M, Getachew Obsa A, Ghafourifard M, Ghashghaee A, Ghith N, Gholamalizadeh M, Gilani SA, Ginindza TG, Gizaw ATT, Glasbey JC, Golechha M, Goleij P, Gomez RS, Gopalani SV, Gorini G, Goudarzi H, Grosso G, Gubari MIM, Guerra MR, Guha A, Gunasekera DS, Gupta B, Gupta VB, Gupta VK, Gutiérrez RA, Hafezi-Nejad N, Haider MR, Haj-Mirzaian A, Halwani R, Hamadeh RR, Hameed S, Hamidi S, Hanif A, Haque S, Harlianto NI, Haro JM, Hasaballah AI, Hassanipour S, Hay RJ, Hay SI, Hayat K, Heidari G, Heidari M, Herrera-Serna BY, Herteliu C, Hezam K, Holla R, Hossain MM, Hossain MBH, Hosseini MS, Hosseini M, Hosseinzadeh M, Hostiuc M, Hostiuc S, Househ M, Hsairi M, Huang J, Hugo FN, Hussain R, Hussein NR, Hwang BF, Iavicoli I, Ibitoye SE, Ida F, Ikuta KS, Ilesanmi OS, Ilic IM, Ilic MD, Irham LM, Islam JY, Islam RM, Islam SMS, Ismail NE, Isola G, Iwagami M, Jacob L, Jain V, Jakovljevic MB, Javaheri T, Jayaram S, Jazayeri SB, Jha RP, Jonas JB, Joo T, Joseph N, Joukar F, Jürisson M, Kabir A, Kahrizi D, Kalankesh LR, Kalhor R, Kaliyadan F, Kalkonde Y, Kamath A, Kameran Al-Salihi N, Kandel H, Kapoor N, Karch A, Kasa AS, Katikireddi SV, Kauppila JH, Kavetskyy T, Kebede SA, Keshavarz P, Keykhaei M, Khader YS, Khalilov R, Khan G, Khan M, Khan MN, Khan MAB, Khang YH, Khater AM, Khayamzadeh M, Kim GR, Kim YJ, Kisa A, Kisa S, Kissimova-Skarbek K, Kopec JA, Koteeswaran R, Koul PA, Koulmane Laxminarayana SL, Koyanagi A, Kucuk Bicer B, Kugbey N, Kumar GA, Kumar N, Kumar N, Kurmi OP, Kutluk T, La Vecchia C, Lami FH, Landires I, Lauriola P, Lee SW, Lee SWH, Lee WC, Lee YH, Leigh J, Leong E, Li J, Li MC, Liu X, Loureiro JA, Lunevicius R, Magdy Abd El Razek M, Majeed A, Makki A, Male S, Malik AA, Mansournia MA, Martini S, Masoumi SZ, Mathur P, McKee M, Mehrotra R, Mendoza W, Menezes RG, Mengesha EW, Mesregah MK, Mestrovic T, Miao Jonasson J, Miazgowski B, Miazgowski T, Michalek IM, Miller TR, Mirzaei H, Mirzaei HR, Misra S, Mithra P, Moghadaszadeh M, Mohammad KA, Mohammad Y, Mohammadi M, Mohammadi SM, Mohammadian-Hafshejani A, Mohammed S, Moka N, Mokdad AH, Molokhia M, Monasta L, Moni MA, Moosavi MA, Moradi Y, Moraga P, Morgado-da-Costa J, Morrison SD, Mosapour A, Mubarik S, Mwanri L, Nagarajan AJ, Nagaraju SP, Nagata C, Naimzada MD, Nangia V, Naqvi AA, Narasimha Swamy S, Ndejjo R, Nduaguba SO, Negoi I, Negru SM, Neupane Kandel S, Nguyen CT, Nguyen HLT, Niazi RK, Nnaji CA, Noor NM, Nuñez-Samudio V, Nzoputam CI, Oancea B, Ochir C, Odukoya OO, Ogbo FA, Olagunju AT, Olakunde BO, Omar E, Omar Bali A, Omonisi AEE, Ong S, Onwujekwe OE, Orru H, Ortega-Altamirano DV, Otstavnov N, Otstavnov SS, Owolabi MO, P A M, Padubidri JR, Pakshir K, Pana A, Panagiotakos D, Panda-Jonas S, Pardhan S, Park EC, Park EK, Pashazadeh Kan F, Patel HK, Patel JR, Pati S, Pattanshetty SM, Paudel U, Pereira DM, Pereira RB, Perianayagam A, Pillay JD, Pirouzpanah S, Pishgar F, Podder I, Postma MJ, Pourjafar H, Prashant A, Preotescu L, Rabiee M, Rabiee N, Radfar A, Radhakrishnan RA, Radhakrishnan V, Rafiee A, Rahim F, Rahimzadeh S, Rahman M, Rahman MA, Rahmani AM, Rajai N, Rajesh A, Rakovac I, Ram P, Ramezanzadeh K, Ranabhat K, Ranasinghe P, Rao CR, Rao SJ, Rawassizadeh R, Razeghinia MS, Renzaho AMN, Rezaei N, Rezaei N, Rezapour A, Roberts TJ, Rodriguez JAB, Rohloff P, Romoli M, Ronfani L, Roshandel G, Rwegerera GM, S M, Sabour S, Saddik B, Saeed U, Sahebkar A, Sahoo H, Salehi S, Salem MR, Salimzadeh H, Samaei M, Samy AM, Sanabria J, Sankararaman S, Santric-Milicevic MM, Sardiwalla Y, Sarveazad A, Sathian B, Sawhney M, Saylan M, Schneider IJC, Sekerija M, Seylani A, Shafaat O, Shaghaghi Z, Shaikh MA, Shamsoddin E, Shannawaz M, Sharma R, Sheikh A, Sheikhbahaei S, Shetty A, Shetty JK, Shetty PH, Shibuya K, Shirkoohi R, Shivakumar KM, Shivarov V, Siabani S, Siddappa Malleshappa SK, Silva DAS, Singh JA, Sintayehu Y, Skryabin VY, Skryabina AA, Soeberg MJ, Sofi-Mahmudi A, Sotoudeh H, Steiropoulos P, Straif K, Subedi R, Sufiyan MB, Sultan I, Sultana S, Sur D, Szerencsés V, Szócska M, Tabarés-Seisdedos R, Tabuchi T, Tadbiri H, Taherkhani A, Takahashi K, Talaat IM, Tan KK, Tat VY, Tedla BAA, Tefera YG, Tehrani-Banihashemi A, Temsah MH, Tesfay FH, Tessema GA, Thapar R, Thavamani A, Thoguluva Chandrasekar V, Thomas N, Tohidinik HR, Touvier M, Tovani-Palone MR, Traini E, Tran BX, Tran KB, Tran MTN, Tripathy JP, Tusa BS, Ullah I, Ullah S, Umapathi KK, Unnikrishnan B, Upadhyay E, Vacante M, Vaezi M, Valadan Tahbaz S, Velazquez DZ, Veroux M, Violante FS, Vlassov V, Vo B, Volovici V, Vu GT, Waheed Y, Wamai RG, Ward P, Wen YF, Westerman R, Winkler AS, Yadav L, Yahyazadeh Jabbari SH, Yang L, Yaya S, Yazie TSY, Yeshaw Y, Yonemoto N, Younis MZ, Yousefi Z, Yu C, Yuce D, Yunusa I, Zadnik V, Zare F, Zastrozhin MS, Zastrozhina A, Zhang J, Zhong C, Zhou L, Zhu C, Ziapour A, Zimmermann IR, Fitzmaurice C, Murray CJL, Force LM. Cancer Incidence, Mortality, Years of Life Lost, Years Lived With Disability, and Disability-Adjusted Life Years for 29 Cancer Groups From 2010 to 2019: A Systematic Analysis for the Global Burden of Disease Study 2019. JAMA Oncol 2022; 8:420-444. [PMID: 34967848 PMCID: PMC8719276 DOI: 10.1001/jamaoncol.2021.6987] [Show More Authors] [Citation(s) in RCA: 1082] [Impact Index Per Article: 360.7] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/31/2021] [Accepted: 10/07/2021] [Indexed: 12/12/2022] [Imported: 04/16/2025]
Abstract
IMPORTANCE The Global Burden of Diseases, Injuries, and Risk Factors Study 2019 (GBD 2019) provided systematic estimates of incidence, morbidity, and mortality to inform local and international efforts toward reducing cancer burden. OBJECTIVE To estimate cancer burden and trends globally for 204 countries and territories and by Sociodemographic Index (SDI) quintiles from 2010 to 2019. EVIDENCE REVIEW The GBD 2019 estimation methods were used to describe cancer incidence, mortality, years lived with disability, years of life lost, and disability-adjusted life years (DALYs) in 2019 and over the past decade. Estimates are also provided by quintiles of the SDI, a composite measure of educational attainment, income per capita, and total fertility rate for those younger than 25 years. Estimates include 95% uncertainty intervals (UIs). FINDINGS In 2019, there were an estimated 23.6 million (95% UI, 22.2-24.9 million) new cancer cases (17.2 million when excluding nonmelanoma skin cancer) and 10.0 million (95% UI, 9.36-10.6 million) cancer deaths globally, with an estimated 250 million (235-264 million) DALYs due to cancer. Since 2010, these represented a 26.3% (95% UI, 20.3%-32.3%) increase in new cases, a 20.9% (95% UI, 14.2%-27.6%) increase in deaths, and a 16.0% (95% UI, 9.3%-22.8%) increase in DALYs. Among 22 groups of diseases and injuries in the GBD 2019 study, cancer was second only to cardiovascular diseases for the number of deaths, years of life lost, and DALYs globally in 2019. Cancer burden differed across SDI quintiles. The proportion of years lived with disability that contributed to DALYs increased with SDI, ranging from 1.4% (1.1%-1.8%) in the low SDI quintile to 5.7% (4.2%-7.1%) in the high SDI quintile. While the high SDI quintile had the highest number of new cases in 2019, the middle SDI quintile had the highest number of cancer deaths and DALYs. From 2010 to 2019, the largest percentage increase in the numbers of cases and deaths occurred in the low and low-middle SDI quintiles. CONCLUSIONS AND RELEVANCE The results of this systematic analysis suggest that the global burden of cancer is substantial and growing, with burden differing by SDI. These results provide comprehensive and comparable estimates that can potentially inform efforts toward equitable cancer control around the world.
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Ikuta KS, Swetschinski LR, Robles Aguilar G, Sharara F, Mestrovic T, Gray AP, Davis Weaver N, Wool EE, Han C, Gershberg Hayoon A, Aali A, Abate SM, Abbasi-Kangevari M, Abbasi-Kangevari Z, Abd-Elsalam S, Abebe G, Abedi A, Abhari AP, Abidi H, Aboagye RG, Absalan A, Abubaker Ali H, Acuna JM, Adane TD, Addo IY, Adegboye OA, Adnan M, Adnani QES, Afzal MS, Afzal S, Aghdam ZB, Ahinkorah BO, Ahmad A, Ahmad AR, Ahmad R, Ahmad S, Ahmad S, Ahmadi S, Ahmed A, Ahmed H, Ahmed JQ, Ahmed Rashid T, Ajami M, Aji B, Akbarzadeh-Khiavi M, Akunna CJ, Al Hamad H, Alahdab F, Al-Aly Z, Aldeyab MA, Aleman AV, Alhalaiqa FAN, Alhassan RK, Ali BA, Ali L, Ali SS, Alimohamadi Y, Alipour V, Alizadeh A, Aljunid SM, Allel K, Almustanyir S, Ameyaw EK, Amit AML, Anandavelane N, Ancuceanu R, Andrei CL, Andrei T, Anggraini D, Ansar A, Anyasodor AE, Arabloo J, Aravkin AY, Areda D, Aripov T, Artamonov AA, Arulappan J, Aruleba RT, Asaduzzaman M, Ashraf T, Athari SS, Atlaw D, Attia S, Ausloos M, Awoke T, Ayala Quintanilla BP, Ayana TM, Azadnajafabad S, Azari Jafari A, B DB, Badar M, Badiye AD, Baghcheghi N, Bagherieh S, Baig AA, Banerjee I, Barac A, Bardhan M, Barone-Adesi F, Barqawi HJ, et alIkuta KS, Swetschinski LR, Robles Aguilar G, Sharara F, Mestrovic T, Gray AP, Davis Weaver N, Wool EE, Han C, Gershberg Hayoon A, Aali A, Abate SM, Abbasi-Kangevari M, Abbasi-Kangevari Z, Abd-Elsalam S, Abebe G, Abedi A, Abhari AP, Abidi H, Aboagye RG, Absalan A, Abubaker Ali H, Acuna JM, Adane TD, Addo IY, Adegboye OA, Adnan M, Adnani QES, Afzal MS, Afzal S, Aghdam ZB, Ahinkorah BO, Ahmad A, Ahmad AR, Ahmad R, Ahmad S, Ahmad S, Ahmadi S, Ahmed A, Ahmed H, Ahmed JQ, Ahmed Rashid T, Ajami M, Aji B, Akbarzadeh-Khiavi M, Akunna CJ, Al Hamad H, Alahdab F, Al-Aly Z, Aldeyab MA, Aleman AV, Alhalaiqa FAN, Alhassan RK, Ali BA, Ali L, Ali SS, Alimohamadi Y, Alipour V, Alizadeh A, Aljunid SM, Allel K, Almustanyir S, Ameyaw EK, Amit AML, Anandavelane N, Ancuceanu R, Andrei CL, Andrei T, Anggraini D, Ansar A, Anyasodor AE, Arabloo 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Micheletti Gomide Nogueira de Sá AC, Milevska Kostova N, Mir SA, Mirghafourvand M, Mirmoeeni S, Mirrakhimov EM, Mirza-Aghazadeh-Attari M, Misganaw AS, Misganaw A, Misra S, Mohammadi E, Mohammadi M, Mohammadian-Hafshejani A, Mohammed S, Mohan S, Mohseni M, Mokdad AH, Momtazmanesh S, Monasta L, Moore CE, Moradi M, Moradi Sarabi M, Morrison SD, Motaghinejad M, Mousavi Isfahani H, Mousavi Khaneghah A, Mousavi-Aghdas SA, Mubarik S, Mulita F, Mulu GBB, Munro SB, Muthupandian S, Nair TS, Naqvi AA, Narang H, Natto ZS, Naveed M, Nayak BP, Naz S, Negoi I, Nejadghaderi SA, Neupane Kandel S, Ngwa CH, Niazi RK, Nogueira de Sá AT, Noroozi N, Nouraei H, Nowroozi A, Nuñez-Samudio V, Nutor JJ, Nzoputam CI, Nzoputam OJ, Oancea B, Obaidur RM, Ojha VA, Okekunle AP, Okonji OC, Olagunju AT, Olusanya BO, Omar Bali A, Omer E, Otstavnov N, Oumer B, P A M, Padubidri JR, Pakshir K, Palicz T, Pana A, Pardhan S, Paredes JL, Parekh U, Park EC, Park S, Pathak A, Paudel R, Paudel U, Pawar S, Pazoki Toroudi H, Peng M, Pensato U, Pepito VCF, Pereira M, Peres MFP, Perico N, Petcu IR, Piracha ZZ, Podder I, Pokhrel N, Poluru R, Postma MJ, Pourtaheri N, Prashant A, Qattea I, Rabiee M, Rabiee N, Radfar A, Raeghi S, Rafiei S, Raghav PR, Rahbarnia L, Rahimi-Movaghar V, Rahman M, Rahman MA, Rahmani AM, Rahmanian V, Ram P, Ranjha MMAN, Rao SJ, Rashidi MM, Rasul A, Ratan ZA, Rawaf S, Rawassizadeh R, Razeghinia MS, Redwan EMM, Regasa MT, Remuzzi G, Reta MA, Rezaei N, Rezapour A, Riad A, Ripon RK, Rudd KE, Saddik B, Sadeghian S, Saeed U, Safaei M, Safary A, Safi SZ, Sahebazzamani M, Sahebkar A, Sahoo H, Salahi S, Salahi S, Salari H, Salehi S, Samadi Kafil H, Samy AM, Sanadgol N, Sankararaman S, Sanmarchi F, Sathian B, Sawhney M, Saya GK, Senthilkumaran S, Seylani A, Shah PA, Shaikh MA, Shaker E, Shakhmardanov MZ, Sharew MM, Sharifi-Razavi A, Sharma P, Sheikhi RA, Sheikhy A, Shetty PH, Shigematsu M, Shin JI, Shirzad-Aski H, Shivakumar KM, Shobeiri P, Shorofi SA, Shrestha S, Sibhat MM, Sidemo NB, Sikder MK, Silva LMLR, Singh JA, Singh P, Singh S, Siraj MS, Siwal SS, Skryabin VY, Skryabina AA, Socea B, Solomon DD, Song Y, Sreeramareddy CT, Suleman M, Suliankatchi Abdulkader R, Sultana S, Szócska M, Tabatabaeizadeh SA, Tabish M, Taheri M, Taki E, Tan KK, Tandukar S, Tat NY, Tat VY, Tefera BN, Tefera YM, Temesgen G, Temsah MH, Tharwat S, Thiyagarajan A, Tleyjeh II, Troeger CE, Umapathi KK, Upadhyay E, Valadan Tahbaz S, Valdez PR, Van den Eynde J, van Doorn HR, Vaziri S, Verras GI, Viswanathan H, Vo B, Waris A, Wassie GT, Wickramasinghe ND, Yaghoubi S, Yahya GATY, Yahyazadeh Jabbari SH, Yigit A, Yiğit V, Yon DK, Yonemoto N, Zahir M, Zaman BA, Zaman SB, Zangiabadian M, Zare I, Zastrozhin MS, Zhang ZJ, Zheng P, Zhong C, Zoladl M, Zumla A, Hay SI, Dolecek C, Sartorius B, Murray CJL, Naghavi M. Global mortality associated with 33 bacterial pathogens in 2019: a systematic analysis for the Global Burden of Disease Study 2019. Lancet 2022; 400:2221-2248. [PMID: 36423648 PMCID: PMC9763654 DOI: 10.1016/s0140-6736(22)02185-7] [Show More Authors] [Citation(s) in RCA: 845] [Impact Index Per Article: 281.7] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 05/25/2022] [Revised: 10/13/2022] [Accepted: 11/01/2022] [Indexed: 11/22/2022] [Imported: 04/16/2025]
Abstract
BACKGROUND Reducing the burden of death due to infection is an urgent global public health priority. Previous studies have estimated the number of deaths associated with drug-resistant infections and sepsis and found that infections remain a leading cause of death globally. Understanding the global burden of common bacterial pathogens (both susceptible and resistant to antimicrobials) is essential to identify the greatest threats to public health. To our knowledge, this is the first study to present global comprehensive estimates of deaths associated with 33 bacterial pathogens across 11 major infectious syndromes. METHODS We estimated deaths associated with 33 bacterial genera or species across 11 infectious syndromes in 2019 using methods from the Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2019, in addition to a subset of the input data described in the Global Burden of Antimicrobial Resistance 2019 study. This study included 343 million individual records or isolates covering 11 361 study-location-years. We used three modelling steps to estimate the number of deaths associated with each pathogen: deaths in which infection had a role, the fraction of deaths due to infection that are attributable to a given infectious syndrome, and the fraction of deaths due to an infectious syndrome that are attributable to a given pathogen. Estimates were produced for all ages and for males and females across 204 countries and territories in 2019. 95% uncertainty intervals (UIs) were calculated for final estimates of deaths and infections associated with the 33 bacterial pathogens following standard GBD methods by taking the 2·5th and 97·5th percentiles across 1000 posterior draws for each quantity of interest. FINDINGS From an estimated 13·7 million (95% UI 10·9-17·1) infection-related deaths in 2019, there were 7·7 million deaths (5·7-10·2) associated with the 33 bacterial pathogens (both resistant and susceptible to antimicrobials) across the 11 infectious syndromes estimated in this study. We estimated deaths associated with the 33 bacterial pathogens to comprise 13·6% (10·2-18·1) of all global deaths and 56·2% (52·1-60·1) of all sepsis-related deaths in 2019. Five leading pathogens-Staphylococcus aureus, Escherichia coli, Streptococcus pneumoniae, Klebsiella pneumoniae, and Pseudomonas aeruginosa-were responsible for 54·9% (52·9-56·9) of deaths among the investigated bacteria. The deadliest infectious syndromes and pathogens varied by location and age. The age-standardised mortality rate associated with these bacterial pathogens was highest in the sub-Saharan Africa super-region, with 230 deaths (185-285) per 100 000 population, and lowest in the high-income super-region, with 52·2 deaths (37·4-71·5) per 100 000 population. S aureus was the leading bacterial cause of death in 135 countries and was also associated with the most deaths in individuals older than 15 years, globally. Among children younger than 5 years, S pneumoniae was the pathogen associated with the most deaths. In 2019, more than 6 million deaths occurred as a result of three bacterial infectious syndromes, with lower respiratory infections and bloodstream infections each causing more than 2 million deaths and peritoneal and intra-abdominal infections causing more than 1 million deaths. INTERPRETATION The 33 bacterial pathogens that we investigated in this study are a substantial source of health loss globally, with considerable variation in their distribution across infectious syndromes and locations. Compared with GBD Level 3 underlying causes of death, deaths associated with these bacteria would rank as the second leading cause of death globally in 2019; hence, they should be considered an urgent priority for intervention within the global health community. Strategies to address the burden of bacterial infections include infection prevention, optimised use of antibiotics, improved capacity for microbiological analysis, vaccine development, and improved and more pervasive use of available vaccines. These estimates can be used to help set priorities for vaccine need, demand, and development. FUNDING Bill & Melinda Gates Foundation, Wellcome Trust, and Department of Health and Social Care, using UK aid funding managed by the Fleming Fund.
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Global burden of 288 causes of death and life expectancy decomposition in 204 countries and territories and 811 subnational locations, 1990-2021: a systematic analysis for the Global Burden of Disease Study 2021. Lancet 2024; 403:2100-2132. [PMID: 38582094 PMCID: PMC11126520 DOI: 10.1016/s0140-6736(24)00367-2] [Show More Authors] [Citation(s) in RCA: 649] [Impact Index Per Article: 649.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 11/13/2023] [Revised: 02/15/2024] [Accepted: 02/22/2024] [Indexed: 04/08/2024] [Imported: 04/16/2025]
Abstract
BACKGROUND Regular, detailed reporting on population health by underlying cause of death is fundamental for public health decision making. Cause-specific estimates of mortality and the subsequent effects on life expectancy worldwide are valuable metrics to gauge progress in reducing mortality rates. These estimates are particularly important following large-scale mortality spikes, such as the COVID-19 pandemic. When systematically analysed, mortality rates and life expectancy allow comparisons of the consequences of causes of death globally and over time, providing a nuanced understanding of the effect of these causes on global populations. METHODS The Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2021 cause-of-death analysis estimated mortality and years of life lost (YLLs) from 288 causes of death by age-sex-location-year in 204 countries and territories and 811 subnational locations for each year from 1990 until 2021. The analysis used 56 604 data sources, including data from vital registration and verbal autopsy as well as surveys, censuses, surveillance systems, and cancer registries, among others. As with previous GBD rounds, cause-specific death rates for most causes were estimated using the Cause of Death Ensemble model-a modelling tool developed for GBD to assess the out-of-sample predictive validity of different statistical models and covariate permutations and combine those results to produce cause-specific mortality estimates-with alternative strategies adapted to model causes with insufficient data, substantial changes in reporting over the study period, or unusual epidemiology. YLLs were computed as the product of the number of deaths for each cause-age-sex-location-year and the standard life expectancy at each age. As part of the modelling process, uncertainty intervals (UIs) were generated using the 2·5th and 97·5th percentiles from a 1000-draw distribution for each metric. We decomposed life expectancy by cause of death, location, and year to show cause-specific effects on life expectancy from 1990 to 2021. We also used the coefficient of variation and the fraction of population affected by 90% of deaths to highlight concentrations of mortality. Findings are reported in counts and age-standardised rates. Methodological improvements for cause-of-death estimates in GBD 2021 include the expansion of under-5-years age group to include four new age groups, enhanced methods to account for stochastic variation of sparse data, and the inclusion of COVID-19 and other pandemic-related mortality-which includes excess mortality associated with the pandemic, excluding COVID-19, lower respiratory infections, measles, malaria, and pertussis. For this analysis, 199 new country-years of vital registration cause-of-death data, 5 country-years of surveillance data, 21 country-years of verbal autopsy data, and 94 country-years of other data types were added to those used in previous GBD rounds. FINDINGS The leading causes of age-standardised deaths globally were the same in 2019 as they were in 1990; in descending order, these were, ischaemic heart disease, stroke, chronic obstructive pulmonary disease, and lower respiratory infections. In 2021, however, COVID-19 replaced stroke as the second-leading age-standardised cause of death, with 94·0 deaths (95% UI 89·2-100·0) per 100 000 population. The COVID-19 pandemic shifted the rankings of the leading five causes, lowering stroke to the third-leading and chronic obstructive pulmonary disease to the fourth-leading position. In 2021, the highest age-standardised death rates from COVID-19 occurred in sub-Saharan Africa (271·0 deaths [250·1-290·7] per 100 000 population) and Latin America and the Caribbean (195·4 deaths [182·1-211·4] per 100 000 population). The lowest age-standardised death rates from COVID-19 were in the high-income super-region (48·1 deaths [47·4-48·8] per 100 000 population) and southeast Asia, east Asia, and Oceania (23·2 deaths [16·3-37·2] per 100 000 population). Globally, life expectancy steadily improved between 1990 and 2019 for 18 of the 22 investigated causes. Decomposition of global and regional life expectancy showed the positive effect that reductions in deaths from enteric infections, lower respiratory infections, stroke, and neonatal deaths, among others have contributed to improved survival over the study period. However, a net reduction of 1·6 years occurred in global life expectancy between 2019 and 2021, primarily due to increased death rates from COVID-19 and other pandemic-related mortality. Life expectancy was highly variable between super-regions over the study period, with southeast Asia, east Asia, and Oceania gaining 8·3 years (6·7-9·9) overall, while having the smallest reduction in life expectancy due to COVID-19 (0·4 years). The largest reduction in life expectancy due to COVID-19 occurred in Latin America and the Caribbean (3·6 years). Additionally, 53 of the 288 causes of death were highly concentrated in locations with less than 50% of the global population as of 2021, and these causes of death became progressively more concentrated since 1990, when only 44 causes showed this pattern. The concentration phenomenon is discussed heuristically with respect to enteric and lower respiratory infections, malaria, HIV/AIDS, neonatal disorders, tuberculosis, and measles. INTERPRETATION Long-standing gains in life expectancy and reductions in many of the leading causes of death have been disrupted by the COVID-19 pandemic, the adverse effects of which were spread unevenly among populations. Despite the pandemic, there has been continued progress in combatting several notable causes of death, leading to improved global life expectancy over the study period. Each of the seven GBD super-regions showed an overall improvement from 1990 and 2021, obscuring the negative effect in the years of the pandemic. Additionally, our findings regarding regional variation in causes of death driving increases in life expectancy hold clear policy utility. Analyses of shifting mortality trends reveal that several causes, once widespread globally, are now increasingly concentrated geographically. These changes in mortality concentration, alongside further investigation of changing risks, interventions, and relevant policy, present an important opportunity to deepen our understanding of mortality-reduction strategies. Examining patterns in mortality concentration might reveal areas where successful public health interventions have been implemented. Translating these successes to locations where certain causes of death remain entrenched can inform policies that work to improve life expectancy for people everywhere. FUNDING Bill & Melinda Gates Foundation.
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Global burden and strength of evidence for 88 risk factors in 204 countries and 811 subnational locations, 1990-2021: a systematic analysis for the Global Burden of Disease Study 2021. Lancet 2024; 403:2162-2203. [PMID: 38762324 PMCID: PMC11120204 DOI: 10.1016/s0140-6736(24)00933-4] [Show More Authors] [Citation(s) in RCA: 611] [Impact Index Per Article: 611.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 01/11/2024] [Revised: 03/11/2024] [Accepted: 05/02/2024] [Indexed: 05/20/2024] [Imported: 04/16/2025]
Abstract
BACKGROUND Understanding the health consequences associated with exposure to risk factors is necessary to inform public health policy and practice. To systematically quantify the contributions of risk factor exposures to specific health outcomes, the Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2021 aims to provide comprehensive estimates of exposure levels, relative health risks, and attributable burden of disease for 88 risk factors in 204 countries and territories and 811 subnational locations, from 1990 to 2021. METHODS The GBD 2021 risk factor analysis used data from 54 561 total distinct sources to produce epidemiological estimates for 88 risk factors and their associated health outcomes for a total of 631 risk-outcome pairs. Pairs were included on the basis of data-driven determination of a risk-outcome association. Age-sex-location-year-specific estimates were generated at global, regional, and national levels. Our approach followed the comparative risk assessment framework predicated on a causal web of hierarchically organised, potentially combinative, modifiable risks. Relative risks (RRs) of a given outcome occurring as a function of risk factor exposure were estimated separately for each risk-outcome pair, and summary exposure values (SEVs), representing risk-weighted exposure prevalence, and theoretical minimum risk exposure levels (TMRELs) were estimated for each risk factor. These estimates were used to calculate the population attributable fraction (PAF; ie, the proportional change in health risk that would occur if exposure to a risk factor were reduced to the TMREL). The product of PAFs and disease burden associated with a given outcome, measured in disability-adjusted life-years (DALYs), yielded measures of attributable burden (ie, the proportion of total disease burden attributable to a particular risk factor or combination of risk factors). Adjustments for mediation were applied to account for relationships involving risk factors that act indirectly on outcomes via intermediate risks. Attributable burden estimates were stratified by Socio-demographic Index (SDI) quintile and presented as counts, age-standardised rates, and rankings. To complement estimates of RR and attributable burden, newly developed burden of proof risk function (BPRF) methods were applied to yield supplementary, conservative interpretations of risk-outcome associations based on the consistency of underlying evidence, accounting for unexplained heterogeneity between input data from different studies. Estimates reported represent the mean value across 500 draws from the estimate's distribution, with 95% uncertainty intervals (UIs) calculated as the 2·5th and 97·5th percentile values across the draws. FINDINGS Among the specific risk factors analysed for this study, particulate matter air pollution was the leading contributor to the global disease burden in 2021, contributing 8·0% (95% UI 6·7-9·4) of total DALYs, followed by high systolic blood pressure (SBP; 7·8% [6·4-9·2]), smoking (5·7% [4·7-6·8]), low birthweight and short gestation (5·6% [4·8-6·3]), and high fasting plasma glucose (FPG; 5·4% [4·8-6·0]). For younger demographics (ie, those aged 0-4 years and 5-14 years), risks such as low birthweight and short gestation and unsafe water, sanitation, and handwashing (WaSH) were among the leading risk factors, while for older age groups, metabolic risks such as high SBP, high body-mass index (BMI), high FPG, and high LDL cholesterol had a greater impact. From 2000 to 2021, there was an observable shift in global health challenges, marked by a decline in the number of all-age DALYs broadly attributable to behavioural risks (decrease of 20·7% [13·9-27·7]) and environmental and occupational risks (decrease of 22·0% [15·5-28·8]), coupled with a 49·4% (42·3-56·9) increase in DALYs attributable to metabolic risks, all reflecting ageing populations and changing lifestyles on a global scale. Age-standardised global DALY rates attributable to high BMI and high FPG rose considerably (15·7% [9·9-21·7] for high BMI and 7·9% [3·3-12·9] for high FPG) over this period, with exposure to these risks increasing annually at rates of 1·8% (1·6-1·9) for high BMI and 1·3% (1·1-1·5) for high FPG. By contrast, the global risk-attributable burden and exposure to many other risk factors declined, notably for risks such as child growth failure and unsafe water source, with age-standardised attributable DALYs decreasing by 71·5% (64·4-78·8) for child growth failure and 66·3% (60·2-72·0) for unsafe water source. We separated risk factors into three groups according to trajectory over time: those with a decreasing attributable burden, due largely to declining risk exposure (eg, diet high in trans-fat and household air pollution) but also to proportionally smaller child and youth populations (eg, child and maternal malnutrition); those for which the burden increased moderately in spite of declining risk exposure, due largely to population ageing (eg, smoking); and those for which the burden increased considerably due to both increasing risk exposure and population ageing (eg, ambient particulate matter air pollution, high BMI, high FPG, and high SBP). INTERPRETATION Substantial progress has been made in reducing the global disease burden attributable to a range of risk factors, particularly those related to maternal and child health, WaSH, and household air pollution. Maintaining efforts to minimise the impact of these risk factors, especially in low SDI locations, is necessary to sustain progress. Successes in moderating the smoking-related burden by reducing risk exposure highlight the need to advance policies that reduce exposure to other leading risk factors such as ambient particulate matter air pollution and high SBP. Troubling increases in high FPG, high BMI, and other risk factors related to obesity and metabolic syndrome indicate an urgent need to identify and implement interventions. FUNDING Bill & Melinda Gates Foundation.
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Sorensen RJD, Soshnikov S, Sotoudeh H, Sowe A, Sufiyan MB, Suk R, Suleman M, Suliankatchi Abdulkader R, Sultana S, Sur D, Szócska M, Tabaeian SP, Tabarés-Seisdedos R, Tabatabaei SM, Tabuchi T, Tadbiri H, Taheri E, Taheri M, Taheri Soodejani M, Takahashi K, Talaat IM, Tampa M, Tan KK, Tat NY, Tat VY, Tavakoli A, Tavakoli A, Tehrani-Banihashemi A, Tekalegn Y, Tesfay FH, Thapar R, Thavamani A, Thoguluva Chandrasekar V, Thomas N, Thomas NK, Ticoalu JHV, Tiyuri A, Tollosa DN, Topor-Madry R, Touvier M, Tovani-Palone MR, Traini E, Tran MTN, Tripathy JP, Ukke GG, Ullah I, Ullah S, Ullah S, Unnikrishnan B, Vacante M, Vaezi M, Valadan Tahbaz S, Valdez PR, Vardavas C, Varthya SB, Vaziri S, Velazquez DZ, Veroux M, Villeneuve PJ, Violante FS, Vladimirov SK, Vlassov V, Vo B, Vu LG, Wadood AW, Waheed Y, Walde MT, Wamai RG, Wang C, Wang F, Wang N, Wang Y, Ward P, Waris A, Westerman R, Wickramasinghe ND, Woldemariam M, Woldu B, Xiao H, Xu S, Xu X, Yadav L, Yahyazadeh Jabbari SH, Yang L, Yazdanpanah F, Yeshaw Y, Yismaw Y, Yonemoto N, Younis MZ, Yousefi Z, Yousefian F, Yu C, Yu Y, Yunusa I, Zahir M, Zaki N, Zaman BA, Zangiabadian M, Zare F, Zare I, Zareshahrabadi Z, Zarrintan A, Zastrozhin MS, Zeineddine MA, Zhang D, Zhang J, Zhang Y, Zhang ZJ, Zhou L, Zodpey S, Zoladl M, Vos T, Hay SI, Force LM, Murray CJL. The global burden of cancer attributable to risk factors, 2010-19: a systematic analysis for the Global Burden of Disease Study 2019. Lancet 2022; 400:563-591. [PMID: 35988567 PMCID: PMC9395583 DOI: 10.1016/s0140-6736(22)01438-6] [Show More Authors] [Citation(s) in RCA: 468] [Impact Index Per Article: 156.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 01/14/2022] [Revised: 05/13/2022] [Accepted: 07/28/2022] [Indexed: 02/06/2023] [Imported: 04/16/2025]
Abstract
BACKGROUND Understanding the magnitude of cancer burden attributable to potentially modifiable risk factors is crucial for development of effective prevention and mitigation strategies. We analysed results from the Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2019 to inform cancer control planning efforts globally. METHODS The GBD 2019 comparative risk assessment framework was used to estimate cancer burden attributable to behavioural, environmental and occupational, and metabolic risk factors. A total of 82 risk-outcome pairs were included on the basis of the World Cancer Research Fund criteria. Estimated cancer deaths and disability-adjusted life-years (DALYs) in 2019 and change in these measures between 2010 and 2019 are presented. FINDINGS Globally, in 2019, the risk factors included in this analysis accounted for 4·45 million (95% uncertainty interval 4·01-4·94) deaths and 105 million (95·0-116) DALYs for both sexes combined, representing 44·4% (41·3-48·4) of all cancer deaths and 42·0% (39·1-45·6) of all DALYs. There were 2·88 million (2·60-3·18) risk-attributable cancer deaths in males (50·6% [47·8-54·1] of all male cancer deaths) and 1·58 million (1·36-1·84) risk-attributable cancer deaths in females (36·3% [32·5-41·3] of all female cancer deaths). The leading risk factors at the most detailed level globally for risk-attributable cancer deaths and DALYs in 2019 for both sexes combined were smoking, followed by alcohol use and high BMI. Risk-attributable cancer burden varied by world region and Socio-demographic Index (SDI), with smoking, unsafe sex, and alcohol use being the three leading risk factors for risk-attributable cancer DALYs in low SDI locations in 2019, whereas DALYs in high SDI locations mirrored the top three global risk factor rankings. From 2010 to 2019, global risk-attributable cancer deaths increased by 20·4% (12·6-28·4) and DALYs by 16·8% (8·8-25·0), with the greatest percentage increase in metabolic risks (34·7% [27·9-42·8] and 33·3% [25·8-42·0]). INTERPRETATION The leading risk factors contributing to global cancer burden in 2019 were behavioural, whereas metabolic risk factors saw the largest increases between 2010 and 2019. Reducing exposure to these modifiable risk factors would decrease cancer mortality and DALY rates worldwide, and policies should be tailored appropriately to local cancer risk factor burden. FUNDING Bill & Melinda Gates Foundation.
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Naghavi M, Vollset SE, Ikuta KS, Swetschinski LR, Gray AP, Wool EE, Robles Aguilar G, Mestrovic T, Smith G, Han C, Hsu RL, Chalek J, Araki DT, Chung E, Raggi C, Gershberg Hayoon A, Davis Weaver N, Lindstedt PA, Smith AE, Altay U, Bhattacharjee NV, Giannakis K, Fell F, McManigal B, Ekapirat N, Mendes JA, Runghien T, Srimokla O, Abdelkader A, Abd-Elsalam S, Aboagye RG, Abolhassani H, Abualruz H, Abubakar U, Abukhadijah HJ, Aburuz S, Abu-Zaid A, Achalapong S, Addo IY, Adekanmbi V, Adeyeoluwa TE, Adnani QES, Adzigbli LA, Afzal MS, Afzal S, Agodi A, Ahlstrom AJ, Ahmad A, Ahmad S, Ahmad T, Ahmadi A, Ahmed A, Ahmed H, Ahmed I, Ahmed M, Ahmed S, Ahmed SA, Akkaif MA, Al Awaidy S, Al Thaher Y, Alalalmeh SO, AlBataineh MT, Aldhaleei WA, Al-Gheethi AAS, Alhaji NB, Ali A, Ali L, Ali SS, Ali W, Allel K, Al-Marwani S, Alrawashdeh A, Altaf A, Al-Tammemi AB, Al-Tawfiq JA, Alzoubi KH, Al-Zyoud WA, Amos B, Amuasi JH, Ancuceanu R, Andrews JR, Anil A, Anuoluwa IA, Anvari S, Anyasodor AE, Apostol GLC, Arabloo J, Arafat M, Aravkin AY, Areda D, Aremu A, Artamonov AA, Ashley EA, Asika MO, Athari SS, Atout MMW, Awoke T, Azadnajafabad S, Azam JM, Aziz S, et alNaghavi M, Vollset SE, Ikuta KS, Swetschinski LR, Gray AP, Wool EE, Robles Aguilar G, Mestrovic T, Smith G, Han C, Hsu RL, Chalek J, Araki DT, Chung E, Raggi C, Gershberg Hayoon A, Davis Weaver N, Lindstedt PA, Smith AE, Altay U, Bhattacharjee NV, Giannakis K, Fell F, McManigal B, Ekapirat N, Mendes JA, Runghien T, Srimokla O, Abdelkader A, Abd-Elsalam S, Aboagye RG, Abolhassani H, Abualruz H, Abubakar U, Abukhadijah HJ, Aburuz S, Abu-Zaid A, Achalapong S, Addo IY, Adekanmbi V, Adeyeoluwa TE, Adnani QES, Adzigbli LA, Afzal MS, Afzal S, Agodi A, Ahlstrom AJ, Ahmad A, Ahmad S, Ahmad T, Ahmadi A, Ahmed A, Ahmed H, Ahmed I, Ahmed M, Ahmed S, Ahmed SA, Akkaif MA, Al Awaidy S, Al Thaher Y, Alalalmeh SO, AlBataineh MT, Aldhaleei WA, Al-Gheethi AAS, Alhaji NB, Ali A, Ali L, Ali SS, Ali W, Allel K, Al-Marwani S, Alrawashdeh A, Altaf A, Al-Tammemi AB, Al-Tawfiq JA, Alzoubi KH, Al-Zyoud WA, Amos B, Amuasi JH, Ancuceanu R, Andrews JR, Anil A, Anuoluwa IA, Anvari S, Anyasodor AE, Apostol GLC, Arabloo J, Arafat M, Aravkin AY, Areda D, Aremu A, Artamonov AA, Ashley EA, Asika MO, Athari SS, Atout MMW, Awoke T, Azadnajafabad S, Azam JM, Aziz S, Azzam AY, Babaei M, Babin FX, Badar M, Baig AA, Bajcetic M, Baker S, Bardhan M, Barqawi HJ, Basharat Z, Basiru A, Bastard M, Basu S, Bayleyegn NS, Belete MA, Bello OO, Beloukas A, Berkley JA, Bhagavathula AS, Bhaskar S, Bhuyan SS, Bielicki JA, Briko NI, Brown CS, Browne AJ, Buonsenso D, Bustanji Y, Carvalheiro CG, Castañeda-Orjuela CA, Cenderadewi M, Chadwick J, Chakraborty S, Chandika RM, Chandy S, Chansamouth V, Chattu VK, Chaudhary AA, Ching PR, Chopra H, Chowdhury FR, Chu DT, Chutiyami M, Cruz-Martins N, da Silva AG, Dadras O, Dai X, Darcho SD, Das S, De la Hoz FP, Dekker DM, Dhama K, Diaz D, Dickson BFR, Djorie SG, Dodangeh M, Dohare S, Dokova KG, Doshi OP, Dowou RK, Dsouza HL, Dunachie SJ, Dziedzic AM, Eckmanns T, Ed-Dra A, Eftekharimehrabad A, Ekundayo TC, El Sayed I, Elhadi M, El-Huneidi W, Elias C, Ellis SJ, Elsheikh R, Elsohaby I, Eltaha C, Eshrati B, Eslami M, Eyre DW, Fadaka AO, Fagbamigbe AF, Fahim A, Fakhri-Demeshghieh A, Fasina FO, Fasina MM, Fatehizadeh A, Feasey NA, Feizkhah A, Fekadu G, Fischer F, Fitriana I, Forrest KM, Fortuna Rodrigues C, Fuller JE, Gadanya MA, Gajdács M, Gandhi AP, Garcia-Gallo EE, Garrett DO, Gautam RK, Gebregergis MW, Gebrehiwot M, Gebremeskel TG, Geffers C, Georgalis L, Ghazy RM, Golechha M, Golinelli D, Gordon M, Gulati S, Gupta RD, Gupta S, Gupta VK, Habteyohannes AD, Haller S, Harapan H, Harrison ML, Hasaballah AI, Hasan I, Hasan RS, Hasani H, Haselbeck AH, Hasnain MS, Hassan II, Hassan S, Hassan Zadeh Tabatabaei MS, Hayat K, He J, Hegazi OE, Heidari M, Hezam K, Holla R, Holm M, Hopkins H, Hossain MM, Hosseinzadeh M, Hostiuc S, Hussein NR, Huy LD, Ibáñez-Prada ED, Ikiroma A, Ilic IM, Islam SMS, Ismail F, Ismail NE, Iwu CD, Iwu-Jaja CJ, Jafarzadeh A, Jaiteh F, Jalilzadeh Yengejeh R, Jamora RDG, Javidnia J, Jawaid T, Jenney AWJ, Jeon HJ, Jokar M, Jomehzadeh N, Joo T, Joseph N, Kamal Z, Kanmodi KK, Kantar RS, Kapisi JA, Karaye IM, Khader YS, Khajuria H, Khalid N, Khamesipour F, Khan A, Khan MJ, Khan MT, Khanal V, Khidri FF, Khubchandani J, Khusuwan S, Kim MS, Kisa A, Korshunov VA, Krapp F, Krumkamp R, Kuddus M, Kulimbet M, Kumar D, Kumaran EAP, Kuttikkattu A, Kyu HH, Landires I, Lawal BK, Le TTT, Lederer IM, Lee M, Lee SW, Lepape A, Lerango TL, Ligade VS, Lim C, Lim SS, Limenh LW, Liu C, Liu X, Liu X, Loftus MJ, M Amin HI, Maass KL, Maharaj SB, Mahmoud MA, Maikanti-Charalampous P, Makram OM, Malhotra K, Malik AA, Mandilara GD, Marks F, Martinez-Guerra BA, Martorell M, Masoumi-Asl H, Mathioudakis AG, May J, McHugh TA, Meiring J, Meles HN, Melese A, Melese EB, Minervini G, Mohamed NS, Mohammed S, Mohan S, Mokdad AH, Monasta L, Moodi Ghalibaf A, Moore CE, Moradi Y, Mossialos E, Mougin V, Mukoro GD, Mulita F, Muller-Pebody B, Murillo-Zamora E, Musa S, Musicha P, Musila LA, Muthupandian S, Nagarajan AJ, Naghavi P, Nainu F, Nair TS, Najmuldeen HHR, Natto ZS, Nauman J, Nayak BP, Nchanji GT, Ndishimye P, Negoi I, Negoi RI, Nejadghaderi SA, Nguyen QP, Noman EA, Nwakanma DC, O'Brien S, Ochoa TJ, Odetokun IA, Ogundijo OA, Ojo-Akosile TR, Okeke SR, Okonji OC, Olagunju AT, Olivas-Martinez A, Olorukooba AA, Olwoch P, Onyedibe KI, Ortiz-Brizuela E, Osuolale O, Ounchanum P, Oyeyemi OT, P A MP, Paredes JL, Parikh RR, Patel J, Patil S, Pawar S, Peleg AY, Peprah P, Perdigão J, Perrone C, Petcu IR, Phommasone K, Piracha ZZ, Poddighe D, Pollard AJ, Poluru R, Ponce-De-Leon A, Puvvula J, Qamar FN, Qasim NH, Rafai CD, Raghav P, Rahbarnia L, Rahim F, Rahimi-Movaghar V, Rahman M, Rahman MA, Ramadan H, Ramasamy SK, Ramesh PS, Ramteke PW, Rana RK, Rani U, Rashidi MM, Rathish D, Rattanavong S, Rawaf S, Redwan EMM, Reyes LF, Roberts T, Robotham JV, Rosenthal VD, Ross AG, Roy N, Rudd KE, Sabet CJ, Saddik BA, Saeb MR, Saeed U, Saeedi Moghaddam S, Saengchan W, Safaei M, Saghazadeh A, Saheb Sharif-Askari N, Sahebkar A, Sahoo SS, Sahu M, Saki M, Salam N, Saleem Z, Saleh MA, Samodra YL, Samy AM, Saravanan A, Satpathy M, Schumacher AE, Sedighi M, Seekaew S, Shafie M, Shah PA, Shahid S, Shahwan MJ, Shakoor S, Shalev N, Shamim MA, Shamshirgaran MA, Shamsi A, Sharifan A, Shastry RP, Shetty M, Shittu A, Shrestha S, Siddig EE, Sideroglou T, Sifuentes-Osornio J, Silva LMLR, Simões EAF, Simpson AJH, Singh A, Singh S, Sinto R, Soliman SSM, Soraneh S, Stoesser N, Stoeva TZ, Swain CK, Szarpak L, T Y SS, Tabatabai S, Tabche C, Taha ZMA, Tan KK, Tasak N, Tat NY, Thaiprakong A, Thangaraju P, Tigoi CC, Tiwari K, Tovani-Palone MR, Tran TH, Tumurkhuu M, Turner P, Udoakang AJ, Udoh A, Ullah N, Ullah S, Vaithinathan AG, Valenti M, Vos T, Vu HTL, Waheed Y, Walker AS, Walson JL, Wangrangsimakul T, Weerakoon KG, Wertheim HFL, Williams PCM, Wolde AA, Wozniak TM, Wu F, Wu Z, Yadav MKK, Yaghoubi S, Yahaya ZS, Yarahmadi A, Yezli S, Yismaw YE, Yon DK, Yuan CW, Yusuf H, Zakham F, Zamagni G, Zhang H, Zhang ZJ, Zielińska M, Zumla A, Zyoud SHH, Zyoud SH, Hay SI, Stergachis A, Sartorius B, Cooper BS, Dolecek C, Murray CJL. Global burden of bacterial antimicrobial resistance 1990-2021: a systematic analysis with forecasts to 2050. Lancet 2024; 404:1199-1226. [PMID: 39299261 PMCID: PMC11718157 DOI: 10.1016/s0140-6736(24)01867-1] [Show More Authors] [Citation(s) in RCA: 412] [Impact Index Per Article: 412.0] [Reference Citation Analysis] [Collaborators] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 06/29/2024] [Revised: 08/20/2024] [Accepted: 09/03/2024] [Indexed: 09/22/2024] [Imported: 04/16/2025]
Abstract
BACKGROUND Antimicrobial resistance (AMR) poses an important global health challenge in the 21st century. A previous study has quantified the global and regional burden of AMR for 2019, followed with additional publications that provided more detailed estimates for several WHO regions by country. To date, there have been no studies that produce comprehensive estimates of AMR burden across locations that encompass historical trends and future forecasts. METHODS We estimated all-age and age-specific deaths and disability-adjusted life-years (DALYs) attributable to and associated with bacterial AMR for 22 pathogens, 84 pathogen-drug combinations, and 11 infectious syndromes in 204 countries and territories from 1990 to 2021. We collected and used multiple cause of death data, hospital discharge data, microbiology data, literature studies, single drug resistance profiles, pharmaceutical sales, antibiotic use surveys, mortality surveillance, linkage data, outpatient and inpatient insurance claims data, and previously published data, covering 520 million individual records or isolates and 19 513 study-location-years. We used statistical modelling to produce estimates of AMR burden for all locations, including those with no data. Our approach leverages the estimation of five broad component quantities: the number of deaths involving sepsis; the proportion of infectious deaths attributable to a given infectious syndrome; the proportion of infectious syndrome deaths attributable to a given pathogen; the percentage of a given pathogen resistant to an antibiotic of interest; and the excess risk of death or duration of an infection associated with this resistance. Using these components, we estimated disease burden attributable to and associated with AMR, which we define based on two counterfactuals; respectively, an alternative scenario in which all drug-resistant infections are replaced by drug-susceptible infections, and an alternative scenario in which all drug-resistant infections were replaced by no infection. Additionally, we produced global and regional forecasts of AMR burden until 2050 for three scenarios: a reference scenario that is a probabilistic forecast of the most likely future; a Gram-negative drug scenario that assumes future drug development that targets Gram-negative pathogens; and a better care scenario that assumes future improvements in health-care quality and access to appropriate antimicrobials. We present final estimates aggregated to the global, super-regional, and regional level. FINDINGS In 2021, we estimated 4·71 million (95% UI 4·23-5·19) deaths were associated with bacterial AMR, including 1·14 million (1·00-1·28) deaths attributable to bacterial AMR. Trends in AMR mortality over the past 31 years varied substantially by age and location. From 1990 to 2021, deaths from AMR decreased by more than 50% among children younger than 5 years yet increased by over 80% for adults 70 years and older. AMR mortality decreased for children younger than 5 years in all super-regions, whereas AMR mortality in people 5 years and older increased in all super-regions. For both deaths associated with and deaths attributable to AMR, meticillin-resistant Staphylococcus aureus increased the most globally (from 261 000 associated deaths [95% UI 150 000-372 000] and 57 200 attributable deaths [34 100-80 300] in 1990, to 550 000 associated deaths [500 000-600 000] and 130 000 attributable deaths [113 000-146 000] in 2021). Among Gram-negative bacteria, resistance to carbapenems increased more than any other antibiotic class, rising from 619 000 associated deaths (405 000-834 000) in 1990, to 1·03 million associated deaths (909 000-1·16 million) in 2021, and from 127 000 attributable deaths (82 100-171 000) in 1990, to 216 000 (168 000-264 000) attributable deaths in 2021. There was a notable decrease in non-COVID-related infectious disease in 2020 and 2021. Our forecasts show that an estimated 1·91 million (1·56-2·26) deaths attributable to AMR and 8·22 million (6·85-9·65) deaths associated with AMR could occur globally in 2050. Super-regions with the highest all-age AMR mortality rate in 2050 are forecasted to be south Asia and Latin America and the Caribbean. Increases in deaths attributable to AMR will be largest among those 70 years and older (65·9% [61·2-69·8] of all-age deaths attributable to AMR in 2050). In stark contrast to the strong increase in number of deaths due to AMR of 69·6% (51·5-89·2) from 2022 to 2050, the number of DALYs showed a much smaller increase of 9·4% (-6·9 to 29·0) to 46·5 million (37·7 to 57·3) in 2050. Under the better care scenario, across all age groups, 92·0 million deaths (82·8-102·0) could be cumulatively averted between 2025 and 2050, through better care of severe infections and improved access to antibiotics, and under the Gram-negative drug scenario, 11·1 million AMR deaths (9·08-13·2) could be averted through the development of a Gram-negative drug pipeline to prevent AMR deaths. INTERPRETATION This study presents the first comprehensive assessment of the global burden of AMR from 1990 to 2021, with results forecasted until 2050. Evaluating changing trends in AMR mortality across time and location is necessary to understand how this important global health threat is developing and prepares us to make informed decisions regarding interventions. Our findings show the importance of infection prevention, as shown by the reduction of AMR deaths in those younger than 5 years. Simultaneously, our results underscore the concerning trend of AMR burden among those older than 70 years, alongside a rapidly ageing global community. The opposing trends in the burden of AMR deaths between younger and older individuals explains the moderate future increase in global number of DALYs versus number of deaths. Given the high variability of AMR burden by location and age, it is important that interventions combine infection prevention, vaccination, minimisation of inappropriate antibiotic use in farming and humans, and research into new antibiotics to mitigate the number of AMR deaths that are forecasted for 2050. FUNDING UK Department of Health and Social Care's Fleming Fund using UK aid, and the Wellcome Trust.
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Collaborators
Mohsen Naghavi, Stein Emil Vollset, Kevin S Ikuta, Lucien R Swetschinski, Authia P Gray, Eve E Wool, Gisela Robles Aguilar, Tomislav Mestrovic, Georgia Smith, Chieh Han, Rebecca L Hsu, Julian Chalek, Daniel T Araki, Erin Chung, Catalina Raggi, Anna Gershberg Hayoon, Nicole Davis Weaver, Paulina A Lindstedt, Amanda E Smith, Umut Altay, Natalia V Bhattacharjee, Konstantinos Giannakis, Frederick Fell, Barney McManigal, Nattwut Ekapirat, Jessica Andretta Mendes, Tilleye Runghien, Oraya Srimokla, Atef Abdelkader, Sherief Abd-Elsalam, Richard Gyan Aboagye, Hassan Abolhassani, Hasan Abualruz, Usman Abubakar, Hana J Abukhadijah, Salahdein Aburuz, Ahmed Abu-Zaid, Sureerak Achalapong, Isaac Yeboah Addo, Victor Adekanmbi, Temitayo Esther Adeyeoluwa, Qorinah Estiningtyas Sakilah Adnani, Leticia Akua Adzigbli, Muhammad Sohail Afzal, Saira Afzal, Antonella Agodi, Austin J Ahlstrom, Aqeel Ahmad, Sajjad Ahmad, Tauseef Ahmad, Ali Ahmadi, Ayman Ahmed, Haroon Ahmed, Ibrar Ahmed, Mohammed Ahmed, Saeed Ahmed, Syed Anees Ahmed, Mohammed Ahmed Akkaif, Salah Al Awaidy, Yazan Al Thaher, Samer O Alalalmeh, Mohammad T AlBataineh, Wafa A Aldhaleei, Adel Ali Saeed Al-Gheethi, Nma Bida Alhaji, Abid Ali, Liaqat Ali, Syed Shujait Ali, Waad Ali, Kasim Allel, Sabah Al-Marwani, Ahmad Alrawashdeh, Awais Altaf, Alaa B Al-Tammemi, Jaffar A Al-Tawfiq, Karem H Alzoubi, Walid Adnan Al-Zyoud, Ben Amos, John H Amuasi, Robert Ancuceanu, Jason R Andrews, Abhishek Anil, Iyadunni Adesola Anuoluwa, Saeid Anvari, Anayochukwu Edward Anyasodor, Geminn Louis Carace Apostol, Jalal Arabloo, Mosab Arafat, Aleksandr Y Aravkin, Demelash Areda, Abdulfatai Aremu, Anton A Artamonov, Elizabeth A Ashley, Marvellous O Asika, Seyyed Shamsadin Athari, Maha Moh'd Wahbi Atout, Tewachew Awoke, Sina Azadnajafabad, James Mba Azam, Shahkaar Aziz, Ahmed Y Azzam, Mahsa Babaei, Francois-Xavier Babin, Muhammad Badar, Atif Amin Baig, Milica Bajcetic, Stephen Baker, Mainak Bardhan, Hiba Jawdat Barqawi, Zarrin Basharat, Afisu Basiru, Mathieu Bastard, Saurav Basu, Nebiyou Simegnew Bayleyegn, Melaku Ashagrie Belete, Olorunjuwon Omolaja Bello, Apostolos Beloukas, James A Berkley, Akshaya Srikanth Bhagavathula, Sonu Bhaskar, Soumitra S Bhuyan, Julia A Bielicki, Nikolay Ivanovich Briko, Colin Stewart Brown, Annie J Browne, Danilo Buonsenso, Yasser Bustanji, Cristina G Carvalheiro, Carlos A Castañeda-Orjuela, Muthia Cenderadewi, Joshua Chadwick, Sandip Chakraborty, Rama Mohan Chandika, Sara Chandy, Vilada Chansamouth, Vijay Kumar Chattu, Anis Ahmad Chaudhary, Patrick R Ching, Hitesh Chopra, Fazle Rabbi Chowdhury, Dinh-Toi Chu, Muhammad Chutiyami, Natalia Cruz-Martins, Alanna Gomes da Silva, Omid Dadras, Xiaochen Dai, Samuel D Darcho, Saswati Das, Fernando Pio De la Hoz, Denise Myriam Dekker, Kuldeep Dhama, Daniel Diaz, Benjamin Felix Rothschild Dickson, Serge Ghislain Djorie, Milad Dodangeh, Sushil Dohare, Klara Georgieva Dokova, Ojas Prakashbhai Doshi, Robert Kokou Dowou, Haneil Larson Dsouza, Susanna J Dunachie, Arkadiusz Marian Dziedzic, Tim Eckmanns, Abdelaziz Ed-Dra, Aziz Eftekharimehrabad, Temitope Cyrus Ekundayo, Iman El Sayed, Muhammed Elhadi, Waseem El-Huneidi, Christelle Elias, Sally J Ellis, Randa Elsheikh, Ibrahim Elsohaby, Chadi Eltaha, Babak Eshrati, Majid Eslami, David William Eyre, Adewale Oluwaseun Fadaka, Adeniyi Francis Fagbamigbe, Ayesha Fahim, Aliasghar Fakhri-Demeshghieh, Folorunso Oludayo Fasina, Modupe Margaret Fasina, Ali Fatehizadeh, Nicholas A Feasey, Alireza Feizkhah, Ginenus Fekadu, Florian Fischer, Ida Fitriana, Karen M Forrest, Celia Fortuna Rodrigues, John E Fuller, Muktar A Gadanya, Márió Gajdács, Aravind P Gandhi, Esteban E Garcia-Gallo, Denise O Garrett, Rupesh K Gautam, Miglas Welay Gebregergis, Mesfin Gebrehiwot, Teferi Gebru Gebremeskel, Christine Geffers, Leonidas Georgalis, Ramy Mohamed Ghazy, Mahaveer Golechha, Davide Golinelli, Melita Gordon, Snigdha Gulati, Rajat Das Gupta, Sapna Gupta, Vijai Kumar Gupta, Awoke Derbie Habteyohannes, Sebastian Haller, 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Minervini, Nouh Saad Mohamed, Shafiu Mohammed, Syam Mohan, Ali H Mokdad, Lorenzo Monasta, AmirAli Moodi Ghalibaf, Catrin E Moore, Yousef Moradi, Elias Mossialos, Vincent Mougin, George Duke Mukoro, Francesk Mulita, Berit Muller-Pebody, Efren Murillo-Zamora, Sani Musa, Patrick Musicha, Lillian A Musila, Saravanan Muthupandian, Ahamarshan Jayaraman Nagarajan, Pirouz Naghavi, Firzan Nainu, Tapas Sadasivan Nair, Hastyar Hama Rashid Najmuldeen, Zuhair S Natto, Javaid Nauman, Biswa Prakash Nayak, G Takop Nchanji, Pacifique Ndishimye, Ionut Negoi, Ruxandra Irina Negoi, Seyed Aria Nejadghaderi, QuynhAnh P Nguyen, Efaq Ali Noman, Davis C Nwakanma, Seamus O'Brien, Theresa J Ochoa, Ismail A Odetokun, Oluwaseun Adeolu Ogundijo, Tolulope R Ojo-Akosile, Sylvester Reuben Okeke, Osaretin Christabel Okonji, Andrew T Olagunju, Antonio Olivas-Martinez, Abdulhakeem Abayomi Olorukooba, Peter Olwoch, Kenneth Ikenna Onyedibe, Edgar Ortiz-Brizuela, Olayinka Osuolale, Pradthana Ounchanum, Oyetunde T Oyeyemi, Mahesh Padukudru P A, Jose L Paredes, Romil R Parikh, Jay Patel, Shankargouda Patil, Shrikant Pawar, Anton Y Peleg, Prince Peprah, João Perdigão, Carlo Perrone, Ionela-Roxana Petcu, Koukeo Phommasone, Zahra Zahid Piracha, Dimitri Poddighe, Andrew J Pollard, Ramesh Poluru, Alfredo Ponce-De-Leon, Jagadeesh Puvvula, Farah Naz Qamar, Nameer Hashim Qasim, Clotaire Donatien Rafai, Pankaja Raghav, Leila Rahbarnia, Fakher Rahim, Vafa Rahimi-Movaghar, Mosiur Rahman, Muhammad Aziz Rahman, Hazem Ramadan, Shakthi Kumaran Ramasamy, Pushkal Sinduvadi Ramesh, Pramod W Ramteke, Rishabh Kumar Rana, Usha Rani, Mohammad-Mahdi Rashidi, Devarajan Rathish, Sayaphet Rattanavong, Salman Rawaf, Elrashdy Moustafa Mohamed Redwan, Luis Felipe Reyes, Tamalee Roberts, Julie V Robotham, Victor Daniel Rosenthal, Allen Guy Ross, Nitai Roy, Kristina E Rudd, Cameron John Sabet, Basema Ahmad Saddik, Mohammad Reza Saeb, Umar Saeed, Sahar Saeedi Moghaddam, Weeravoot Saengchan, Mohsen Safaei, Amene Saghazadeh, Narjes Saheb 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Sheena BS, Hiebert L, Han H, Ippolito H, Abbasi-Kangevari M, Abbasi-Kangevari Z, Abbastabar H, Abdoli A, Abubaker Ali H, Adane MM, Adegboye OA, Adnani QES, Advani SM, Afzal MS, Afzal S, Aghaie Meybodi M, Ahadinezhad B, Ahinkorah BO, Ahmad S, Ahmad T, Ahmadi S, Ahmed H, Ahmed MB, Ahmed Rashid T, Akalu GT, Aklilu A, Akram T, Al Hamad H, Alahdab F, Alem AZ, Alem DT, Alhalaiqa FAN, Alhassan RK, Ali L, Ali MA, Alimohamadi Y, Alipour V, Alkhayyat M, Almustanyir S, Al-Raddadi RM, Altawalah H, Amini S, Amu H, Ancuceanu R, Andrei CL, Andrei T, Anoushiravani A, Ansar A, Anyasodor AE, Arabloo J, Arab-Zozani M, Argaw AM, Argaw ZG, Arshad M, Artamonov AA, Ashraf T, Atlaw D, Ausloos F, Ausloos M, Azadnajafabad S, Azangou-Khyavy M, Azari Jafari A, Azarian G, Bagheri S, Bahadory S, Baig AA, Banach M, Barati N, Barrow A, Batiha AMM, Bejarano Ramirez DF, Belgaumi UI, Berhie AY, Bhagat DS, Bhardwaj N, Bhardwaj P, Bhattacharyya K, Bhojaraja VS, Bijani A, Biondi A, Bodicha BBA, Bojia HA, Boloor A, Bosetti 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Tovani-Palone MR, Traini E, Tran MTN, Trihandini I, Tusa BS, Ullah I, Vacante M, Valadan Tahbaz S, Valdez PR, Varthya SB, Vo B, Waheed Y, Weldesenbet AB, Woldemariam M, Xu S, Yahyazadeh Jabbari SH, Yaseri M, Yeshaw Y, Yiğit V, Yirdaw BW, Yonemoto N, Yu C, Yunusa I, Zahir M, Zaki L, Zamani M, Zamanian M, Zastrozhin MS, Vos T, Ward JW, Dirac MA. Global, regional, and national burden of hepatitis B, 1990-2019: a systematic analysis for the Global Burden of Disease Study 2019. Lancet Gastroenterol Hepatol 2022; 7:796-829. [PMID: 35738290 PMCID: PMC9349325 DOI: 10.1016/s2468-1253(22)00124-8] [Show More Authors] [Citation(s) in RCA: 387] [Impact Index Per Article: 129.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 09/10/2021] [Revised: 04/02/2022] [Accepted: 04/04/2022] [Indexed: 12/23/2022] [Imported: 04/16/2025]
Abstract
BACKGROUND Combating viral hepatitis is part of the UN Sustainable Development Goals (SDGs), and WHO has put forth hepatitis B elimination targets in its Global Health Sector Strategy on Viral Hepatitis (WHO-GHSS) and Interim Guidance for Country Validation of Viral Hepatitis Elimination (WHO Interim Guidance). We estimated the global, regional, and national prevalence of hepatitis B virus (HBV), as well as mortality and disability-adjusted life-years (DALYs) due to HBV, as part of the Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2019. This included estimates for 194 WHO member states, for which we compared our estimates to WHO elimination targets. METHODS The primary data sources were population-based serosurveys, claims and hospital discharges, cancer registries, vital registration systems, and published case series. We estimated chronic HBV infection and the burden of HBV-related diseases, defined as an aggregate of cirrhosis due to hepatitis B, liver cancer due to hepatitis B, and acute hepatitis B. We used DisMod-MR 2.1, a Bayesian mixed-effects meta-regression tool, to estimate the prevalence of chronic HBV infection, cirrhosis, and aetiological proportions of cirrhosis. We used mortality-to-incidence ratios modelled with spatiotemporal Gaussian process regression to estimate the incidence of liver cancer. We used the Cause of Death Ensemble modelling (CODEm) model, a tool that selects models and covariates on the basis of out-of-sample performance, to estimate mortality due to cirrhosis, liver cancer, and acute hepatitis B. FINDINGS In 2019, the estimated global, all-age prevalence of chronic HBV infection was 4·1% (95% uncertainty interval [UI] 3·7 to 4·5), corresponding to 316 million (284 to 351) infected people. There was a 31·3% (29·0 to 33·9) decline in all-age prevalence between 1990 and 2019, with a more marked decline of 76·8% (76·2 to 77·5) in prevalence in children younger than 5 years. HBV-related diseases resulted in 555 000 global deaths (487 000 to 630 000) in 2019. The number of HBV-related deaths increased between 1990 and 2019 (by 5·9% [-5·6 to 19·2]) and between 2015 and 2019 (by 2·9% [-5·9 to 11·3]). By contrast, all-age and age-standardised death rates due to HBV-related diseases decreased during these periods. We compared estimates for 2019 in 194 WHO locations to WHO-GHSS 2020 targets, and found that four countries achieved a 10% reduction in deaths, 15 countries achieved a 30% reduction in new cases, and 147 countries achieved a 1% prevalence in children younger than 5 years. As of 2019, 68 of 194 countries had already achieved the 2030 target proposed in WHO Interim Guidance of an all-age HBV-related death rate of four per 100 000. INTERPRETATION The prevalence of chronic HBV infection declined over time, particularly in children younger than 5 years, since the introduction of hepatitis B vaccination. HBV-related death rates also decreased, but HBV-related death counts increased as a result of population growth, ageing, and cohort effects. By 2019, many countries had met the interim seroprevalence target for children younger than 5 years, but few countries had met the WHO-GHSS interim targets for deaths and new cases. Progress according to all indicators must be accelerated to meet 2030 targets, and there are marked disparities in burden and progress across the world. HBV interventions, such as vaccination, testing, and treatment, must be strategically supported and scaled up to achieve elimination. FUNDING Bill & Melinda Gates Foundation.
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Sharma R, Abbasi-Kangevari M, Abd-Rabu R, Abidi H, Abu-Gharbieh E, Acuna JM, Adhikari S, Advani SM, Afzal MS, Aghaie Meybodi M, Ahinkorah BO, Ahmad S, Ahmadi A, Ahmadi S, Ahmed H, Ahmed LA, Ahmed MB, Al Hamad H, Alahdab F, Alanezi FM, Alanzi TM, Alhalaiqa FAN, Alimohamadi Y, Alipour V, Aljunid SM, Alkhayyat M, Almustanyir S, Al-Raddadi RM, Alvand S, Alvis-Guzman N, Amini S, Ancuceanu R, Anoushiravani A, Anoushirvani AA, Ansari-Moghaddam A, Arabloo J, Aryannejad A, Asghari Jafarabadi M, Athari SS, Ausloos F, Ausloos M, Awedew AF, Awoke MA, Ayana TM, Azadnajafabad S, Azami H, Azangou-Khyavy M, Azari Jafari A, Badiye AD, Bagherieh S, Bahadory S, Baig AA, Baker JL, Banach M, Barrow A, Berhie AY, Besharat S, Bhagat DS, Bhagavathula AS, Bhala N, Bhattacharyya K, Bhojaraja VS, Bibi S, Bijani A, Biondi A, Bjørge T, Bodicha BBA, Braithwaite D, Brenner H, Calina D, Cao C, Cao Y, Carreras G, Carvalho F, Cerin E, Chakinala RC, Cho WCS, Chu DT, Conde J, Costa VM, Cruz-Martins N, Dadras O, Dai X, Dandona L, Dandona R, Danielewicz A, Demeke FM, Demissie GD, Desai R, Dhamnetiya D, Dianatinasab M, Diaz D, Didehdar M, Doaei S, Doan LP, Dodangeh M, Eghbalian F, Ejeta DD, Ekholuenetale M, Ekundayo TC, et alSharma R, Abbasi-Kangevari M, Abd-Rabu R, Abidi H, Abu-Gharbieh E, Acuna JM, Adhikari S, Advani SM, Afzal MS, Aghaie Meybodi M, Ahinkorah BO, Ahmad S, Ahmadi A, Ahmadi S, Ahmed H, Ahmed LA, Ahmed MB, Al Hamad H, Alahdab F, Alanezi FM, Alanzi TM, Alhalaiqa FAN, Alimohamadi Y, Alipour V, Aljunid SM, Alkhayyat M, Almustanyir S, Al-Raddadi RM, Alvand S, Alvis-Guzman N, Amini S, Ancuceanu R, Anoushiravani A, Anoushirvani AA, Ansari-Moghaddam A, Arabloo J, Aryannejad A, Asghari Jafarabadi M, Athari SS, Ausloos F, Ausloos M, Awedew AF, Awoke MA, Ayana TM, Azadnajafabad S, Azami H, Azangou-Khyavy M, Azari Jafari A, Badiye AD, Bagherieh S, Bahadory S, Baig AA, Baker JL, Banach M, Barrow A, Berhie AY, Besharat S, Bhagat DS, Bhagavathula AS, Bhala N, Bhattacharyya K, Bhojaraja VS, Bibi S, Bijani A, Biondi A, Bjørge T, Bodicha BBA, Braithwaite D, Brenner H, Calina D, Cao C, Cao Y, Carreras G, Carvalho F, Cerin E, Chakinala RC, Cho WCS, Chu DT, Conde J, Costa VM, Cruz-Martins N, Dadras O, Dai X, Dandona L, Dandona R, Danielewicz A, Demeke FM, Demissie GD, Desai R, Dhamnetiya D, Dianatinasab M, Diaz D, Didehdar M, Doaei S, Doan LP, Dodangeh M, Eghbalian F, Ejeta DD, Ekholuenetale M, Ekundayo TC, El Sayed I, Elhadi M, Enyew DB, Eyayu T, Ezzeddini R, Fakhradiyev IR, Farooque U, Farrokhpour H, Farzadfar F, Fatehizadeh A, Fattahi H, Fattahi N, Fereidoonnezhad M, Fernandes E, Fetensa G, Filip I, Fischer F, Foroutan M, Gaal PA, Gad MM, Gallus S, Garg T, Getachew T, Ghamari SH, Ghashghaee A, Ghith N, Gholamalizadeh M, Gholizadeh Navashenaq J, Gizaw AT, Glasbey JC, Golechha M, Goleij P, Gonfa KB, Gorini G, Guha A, Gupta S, Gupta VB, Gupta VK, Haddadi R, Hafezi-Nejad N, Haj-Mirzaian A, Halwani R, Haque S, Hariri S, Hasaballah AI, Hassanipour S, Hay SI, Herteliu C, Holla R, Hosseini MS, Hosseinzadeh M, Hostiuc M, Househ M, Huang J, Humayun A, Iavicoli I, Ilesanmi OS, Ilic IM, Ilic MD, Islami F, Iwagami M, Jahani MA, Jakovljevic M, Javaheri T, Jayawardena R, Jebai R, Jha RP, Joo T, Joseph N, Joukar F, Jozwiak JJ, Kabir A, Kalhor R, Kamath A, Kapoor N, Karaye IM, Karimi A, Kauppila JH, Kazemi A, Keykhaei M, Khader YS, Khajuria H, Khalilov R, Khanali J, Khayamzadeh M, Khodadost M, Kim H, Kim MS, Kisa A, Kisa S, Kolahi AA, Koohestani HR, Kopec JA, Koteeswaran R, Koyanagi A, Krishnamoorthy Y, Kumar GA, Kumar M, Kumar V, La Vecchia C, Lami FH, Landires I, Ledda C, Lee SW, Lee WC, Lee YY, Leong E, Li B, Lim SS, Lobo SW, Loureiro JA, Lunevicius R, Madadizadeh F, Mahmoodpoor A, Majeed A, Malekpour MR, Malekzadeh R, Malik AA, Mansour-Ghanaei F, Mantovani LG, Martorell M, Masoudi S, Mathur P, Meena JK, Mehrabi Nasab E, Mendoza W, Mentis AFA, Mestrovic T, Miao Jonasson J, Miazgowski B, Miazgowski T, Mijena GFW, Mirmoeeni S, Mirza-Aghazadeh-Attari M, Mirzaei H, Misra S, Mohammad KA, Mohammadi E, Mohammadi S, Mohammadi SM, Mohammadian-Hafshejani A, Mohammed S, Mohammed TA, Moka N, Mokdad AH, Mokhtari Z, Molokhia M, Momtazmanesh S, Monasta L, Moradi G, Moradzadeh R, Moraga P, Morgado-da-Costa J, Mubarik S, Mulita F, Naghavi M, Naimzada MD, Nam HS, Natto ZS, Nayak BP, Nazari J, Nazemalhosseini-Mojarad E, Negoi I, Nguyen CT, Nguyen SH, Noor NM, Noori M, Noori SMA, Nuñez-Samudio V, Nzoputam CI, Oancea B, Odukoya OO, Oguntade AS, Okati-Aliabad H, Olagunju AT, Olagunju TO, Ong S, Ostroff SM, Padron-Monedero A, Pakzad R, Pana A, Pandey A, Pashazadeh Kan F, Patel UK, Paudel U, Pereira RB, Perumalsamy N, Pestell RG, Piracha ZZ, Pollok RCG, Pourshams A, Pourtaheri N, Prashant A, Rabiee M, Rabiee N, Radfar A, Rafiei S, Rahman M, Rahmani AM, Rahmanian V, Rajai N, Rajesh A, Ramezani-Doroh V, Ramezanzadeh K, Ranabhat K, Rashedi S, Rashidi A, Rashidi M, Rashidi MM, Rastegar M, Rawaf DL, Rawaf S, Rawassizadeh R, Razeghinia MS, Renzaho AMN, Rezaei N, Rezaei N, Rezaei S, Rezaeian M, Rezazadeh-Khadem S, Roshandel G, Saber-Ayad MM, Saberzadeh-Ardestani B, Saddik B, Sadeghi H, Saeed U, Sahebazzamani M, Sahebkar A, Salek Farrokhi A, Salimi A, Salimzadeh H, Samadi P, Samaei M, Samy AM, Sanabria J, Santric-Milicevic MM, Saqib MAN, Sarveazad A, Sathian B, Satpathy M, Schneider IJC, Šekerija M, Sepanlou SG, Seylani A, Sha F, Shafiee SM, Shaghaghi Z, Shahabi S, Shaker E, Sharifian M, Sharifi-Rad J, Sheikhbahaei S, Shetty JK, Shirkoohi R, Shobeiri P, Siddappa Malleshappa SK, Silva DAS, Silva Julian G, Singh AD, Singh JA, Siraj MS, Sivandzadeh GR, Skryabin VY, Skryabina AA, Socea B, Solmi M, Soltani-Zangbar MS, Song S, Szerencsés V, Szócska M, Tabarés-Seisdedos R, Tabibian E, Taheri M, TaheriAbkenar Y, Taherkhani A, Talaat IM, Tan KK, Tbakhi A, Tesfaye B, Tiyuri A, Tollosa DN, Touvier M, Tran BX, Tusa BS, Ullah I, Ullah S, Vacante M, Valadan Tahbaz S, Veroux M, Vo B, Vos T, Wang C, Westerman R, Woldemariam M, Yahyazadeh Jabbari SH, Yang L, Yazdanpanah F, Yu C, Yuce D, Yunusa I, Zadnik V, Zahir M, Zare I, Zhang ZJ, Zoladl M. Global, regional, and national burden of colorectal cancer and its risk factors, 1990-2019: a systematic analysis for the Global Burden of Disease Study 2019. Lancet Gastroenterol Hepatol 2022; 7:627-647. [PMID: 35397795 PMCID: PMC9192760 DOI: 10.1016/s2468-1253(22)00044-9] [Show More Authors] [Citation(s) in RCA: 340] [Impact Index Per Article: 113.3] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 09/25/2021] [Revised: 01/30/2022] [Accepted: 02/04/2022] [Indexed: 12/03/2022] [Imported: 04/16/2025]
Abstract
BACKGROUND Colorectal cancer is the third leading cause of cancer deaths worldwide. Given the recent increasing trends in colorectal cancer incidence globally, up-to-date information on the colorectal cancer burden could guide screening, early detection, and treatment strategies, and help effectively allocate resources. We examined the temporal patterns of the global, regional, and national burden of colorectal cancer and its risk factors in 204 countries and territories across the past three decades. METHODS Estimates of incidence, mortality, and disability-adjusted life years (DALYs) for colorectal cancer were generated as a part of the Global Burden of Diseases, Injuries and Risk Factors Study (GBD) 2019 by age, sex, and geographical location for the period 1990-2019. Mortality estimates were produced using the cause of death ensemble model. We also calculated DALYs attributable to risk factors that had evidence of causation with colorectal cancer. FINDINGS Globally, between 1990 and 2019, colorectal cancer incident cases more than doubled, from 842 098 (95% uncertainty interval [UI] 810 408-868 574) to 2·17 million (2·00-2·34), and deaths increased from 518 126 (493 682-537 877) to 1·09 million (1·02-1·15). The global age-standardised incidence rate increased from 22·2 (95% UI 21·3-23·0) per 100 000 to 26·7 (24·6-28·9) per 100 000, whereas the age-standardised mortality rate decreased from 14·3 (13·5-14·9) per 100 000 to 13·7 (12·6-14·5) per 100 000 and the age-standardised DALY rate decreased from 308·5 (294·7-320·7) per 100 000 to 295·5 (275·2-313·0) per 100 000 from 1990 through 2019. Taiwan (province of China; 62·0 [48·9-80·0] per 100 000), Monaco (60·7 [48·5-73·6] per 100 000), and Andorra (56·6 [42·8-71·9] per 100 000) had the highest age-standardised incidence rates, while Greenland (31·4 [26·0-37·1] per 100 000), Brunei (30·3 [26·6-34·1] per 100 000), and Hungary (28·6 [23·6-34·0] per 100 000) had the highest age-standardised mortality rates. From 1990 through 2019, a substantial rise in incidence rates was observed in younger adults (age <50 years), particularly in high Socio-demographic Index (SDI) countries. Globally, a diet low in milk (15·6%), smoking (13·3%), a diet low in calcium (12·9%), and alcohol use (9·9%) were the main contributors to colorectal cancer DALYs in 2019. INTERPRETATION The increase in incidence rates in people younger than 50 years requires vigilance from researchers, clinicians, and policy makers and a possible reconsideration of screening guidelines. The fast-rising burden in low SDI and middle SDI countries in Asia and Africa calls for colorectal cancer prevention approaches, greater awareness, and cost-effective screening and therapeutic options in these regions. FUNDING Bill & Melinda Gates Foundation.
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Black RJ, Cross M, Haile LM, Culbreth GT, Steinmetz JD, Hagins H, Kopec JA, Brooks PM, Woolf AD, Ong KL, Kopansky-Giles DR, Dreinhoefer KE, Betteridge N, Aali A, Abbasifard M, Abbasi-Kangevari M, Abdurehman AM, Abedi A, Abidi H, Aboagye RG, Abolhassani H, Abu-Gharbieh E, Abu-Zaid A, Adamu K, Addo IY, Adesina MA, Adnani QES, Afzal MS, Ahmed A, Aithala JP, Akhlaghdoust M, Alemayehu A, Alvand S, Alvis-Zakzuk NJ, Amu H, Antony B, Arabloo J, Aravkin AY, Arulappan J, Ashraf T, Athari SS, Azadnajafabad S, Badawi A, Baghcheghi N, Baig AA, Balta AB, Banach M, Banik PC, Barrow A, Bashiri A, Bearne LM, Bekele A, Bensenor IM, Berhie AY, Bhagavathula AS, Bhardwaj P, Bhat AN, Bhojaraja VS, Bitaraf S, Bodicha BBA, Botelho JS, Briggs AM, Buchbinder R, Castañeda-Orjuela CA, Charalampous P, Chattu VK, Coberly K, Cruz-Martins N, Dadras O, Dai X, de Luca K, Dessalegn FN, Dessie G, Dhimal M, Digesa LE, Diress M, Doku PN, Edinur HA, Ekholuenetale M, Elhadi M, El-Sherbiny YM, Etaee F, Ezzeddini R, Faghani S, Filip I, Fischer F, Fukumoto T, Ganesan B, Gebremichael MA, Gerema U, Getachew ME, Ghashghaee A, Gill TK, Gupta B, Gupta S, Gupta VB, Gupta VK, Halwani R, Hannan MA, Haque S, et alBlack RJ, Cross M, Haile LM, Culbreth GT, Steinmetz JD, Hagins H, Kopec JA, Brooks PM, Woolf AD, Ong KL, Kopansky-Giles DR, Dreinhoefer KE, Betteridge N, Aali A, Abbasifard M, Abbasi-Kangevari M, Abdurehman AM, Abedi A, Abidi H, Aboagye RG, Abolhassani H, Abu-Gharbieh E, Abu-Zaid A, Adamu K, Addo IY, Adesina MA, Adnani QES, Afzal MS, Ahmed A, Aithala JP, Akhlaghdoust M, Alemayehu A, Alvand S, Alvis-Zakzuk NJ, Amu H, Antony B, Arabloo J, Aravkin AY, Arulappan J, Ashraf T, Athari SS, Azadnajafabad S, Badawi A, Baghcheghi N, Baig AA, Balta AB, Banach M, Banik PC, Barrow A, Bashiri A, Bearne LM, Bekele A, Bensenor IM, Berhie AY, Bhagavathula AS, Bhardwaj P, Bhat AN, Bhojaraja VS, Bitaraf S, Bodicha BBA, Botelho JS, Briggs AM, Buchbinder R, Castañeda-Orjuela CA, Charalampous P, Chattu VK, Coberly K, Cruz-Martins N, Dadras O, Dai X, de Luca K, Dessalegn FN, Dessie G, Dhimal M, Digesa LE, Diress M, Doku PN, Edinur HA, Ekholuenetale M, Elhadi M, El-Sherbiny YM, Etaee F, Ezzeddini R, Faghani S, Filip I, Fischer F, Fukumoto T, Ganesan B, Gebremichael MA, Gerema U, Getachew ME, Ghashghaee A, Gill TK, Gupta B, Gupta S, Gupta VB, Gupta VK, Halwani R, Hannan MA, Haque S, Harlianto NI, Harorani M, Hasaballah AI, Hassen MB, Hay SI, Hayat K, Heidari G, Hezam K, Hill CL, Hiraike Y, Horita N, Hoveidaei AH, Hsiao AK, Hsieh E, Hussain S, Iavicoli I, Ilic IM, Islam SMS, Ismail NE, Iwagami M, Jakovljevic M, Jani CT, Jeganathan J, Joseph N, Kadashetti V, Kandel H, Kanko TK, Karaye IM, Khajuria H, Khan MJ, Khan MAB, Khanali J, Khatatbeh MM, Khubchandani J, Kim YJ, Kisa A, Kolahi AA, Kompani F, Koohestani HR, Koyanagi A, Krishan K, Kuddus M, Kumar N, Kuttikkattu A, Larijani B, Lim SS, Lo J, Machado VS, Mahajan PB, Majeed A, Malakan Rad E, Malik AA, Mansournia MA, Mathews E, Mendes JJ, Mentis AFA, Mesregah MK, Mestrovic T, Mirghaderi SP, Mirrakhimov EM, Misganaw A, Mohamadkhani A, Mohammed S, Mokdad AH, Moniruzzaman M, Montasir AA, Mulu GB, Murillo-Zamora E, Murray CJL, Mustafa G, Naghavi M, Nair TS, Naqvi AA, Natto ZS, Nayak BP, Neupane S, Nguyen CT, Niazi RK, Nzoputam OJ, Oh IH, Okati-Aliabad H, Okonji OC, Olufadewa II, Owolabi MO, Pacheco-Barrios K, Padubidri JR, Patel J, Pathan AR, Pawar S, Pedersini P, Perianayagam A, Petcu IR, Qattea I, Radfar A, Rafiei A, Rahman MHU, Rahmanian V, Rashedi V, Rashidi MM, Ratan ZA, Rawaf S, Razeghinia MS, Redwan EMM, Renzaho AMN, Rezaei N, Rezaei N, Riad A, Saad AMA, Saddik B, Saeed U, Safary A, Sahebazzamani M, Sahebkar A, Sahoo H, Salek Farrokhi A, Saqib MAN, Seylani A, Shahabi S, Shaikh MA, Shashamo BB, Shetty A, Shetty JK, Shigematsu M, Shivarov V, Shobeiri P, Sibhat MM, Sinaei E, Singh A, Singh JA, Singh P, Singh S, Siraj MS, Skryabina AA, Slater H, Smith AE, Solomon Y, Soltani-Zangbar MS, Tabish M, Tan KK, Tat NY, Tehrani-Banihashemi A, Tharwat S, Tovani-Palone MR, Tusa BS, Valadan Tahbaz S, Valdez PR, Valizadeh R, Vaziri S, Vollset SE, Wu AM, Yada DY, Yehualashet SS, Yonemoto N, You Y, Yunusa I, Zangiabadian M, Zare I, Zarrintan A, Zhang ZJ, Zhong C, Zoladl M, Vos T, March LM. Global, regional, and national burden of rheumatoid arthritis, 1990-2020, and projections to 2050: a systematic analysis of the Global Burden of Disease Study 2021. THE LANCET. RHEUMATOLOGY 2023; 5:e594-e610. [PMID: 37795020 PMCID: PMC10546867 DOI: 10.1016/s2665-9913(23)00211-4] [Show More Authors] [Citation(s) in RCA: 174] [Impact Index Per Article: 87.0] [Reference Citation Analysis] [Abstract] [Grants] [Track Full Text] [Download PDF] [Figures] [Subscribe] [Scholar Register] [Indexed: 10/06/2023] [Imported: 04/16/2025]
Abstract
BACKGROUND Rheumatoid arthritis is a chronic autoimmune inflammatory disease associated with disability and premature death. Up-to-date estimates of the burden of rheumatoid arthritis are required for health-care planning, resource allocation, and prevention. As part of the Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2021, we provide updated estimates of the prevalence of rheumatoid arthritis and its associated deaths and disability-adjusted life-years (DALYs) by age, sex, year, and location, with forecasted prevalence to 2050. METHODS Rheumatoid arthritis prevalence was estimated in 204 countries and territories from 1990 to 2020 using Bayesian meta-regression models and data from population-based studies and medical claims data (98 prevalence and 25 incidence studies). Mortality was estimated from vital registration data with the Cause of Death Ensemble model (CODEm). Years of life lost (YLL) were calculated with use of standard GBD lifetables, and years lived with disability (YLDs) were estimated from prevalence, a meta-analysed distribution of rheumatoid arthritis severity, and disability weights. DALYs were calculated by summing YLLs and YLDs. Smoking was the only risk factor analysed. Rheumatoid arthritis prevalence was forecast to 2050 by logistic regression with Socio-Demographic Index as a predictor, then multiplying by projected population estimates. FINDINGS In 2020, an estimated 17·6 million (95% uncertainty interval 15·8-20·3) people had rheumatoid arthritis worldwide. The age-standardised global prevalence rate was 208·8 cases (186·8-241·1) per 100 000 population, representing a 14·1% (12·7-15·4) increase since 1990. Prevalence was higher in females (age-standardised female-to-male prevalence ratio 2·45 [2·40-2·47]). The age-standardised death rate was 0·47 (0·41-0·54) per 100 000 population (38 300 global deaths [33 500-44 000]), a 23·8% (17·5-29·3) decrease from 1990 to 2020. The 2020 DALY count was 3 060 000 (2 320 000-3 860 000), with an age-standardised DALY rate of 36·4 (27·6-45·9) per 100 000 population. YLDs accounted for 76·4% (68·3-81·0) of DALYs. Smoking risk attribution for rheumatoid arthritis DALYs was 7·1% (3·6-10·3). We forecast that 31·7 million (25·8-39·0) individuals will be living with rheumatoid arthritis worldwide by 2050. INTERPRETATION Rheumatoid arthritis mortality has decreased globally over the past three decades. Global age-standardised prevalence rate and YLDs have increased over the same period, and the number of cases is projected to continue to increase to the year 2050. Improved access to early diagnosis and treatment of rheumatoid arthritis globally is required to reduce the future burden of the disease. FUNDING Bill & Melinda Gates Foundation, Institute of Bone and Joint Research, and Global Alliance for Musculoskeletal Health.
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Gardner WM, Razo C, McHugh TA, Hagins H, Vilchis-Tella VM, Hennessy C, Taylor HJ, Perumal N, Fuller K, Cercy KM, Zoeckler LZ, Chen CS, Lim SS, Aali A, Abate KH, Abd-Elsalam S, Abdurehman AM, Abebe G, Abidi H, Aboagye RG, Abolhassani H, Aboye GBA, Abtew YD, Accrombessi MMK, Adane DEA, Adane TD, Addo IY, Adesina MA, Adeyinka DA, Adnani QES, Afzal MS, Afzal S, Agustina R, Ahinkorah BO, Ahmad A, Ahmad S, Ahmadi S, Ahmed A, Ahmed Rashid T, Aiman W, Ajami M, Akbarialiabad H, Alahdab F, Al-Aly Z, Alam N, Alemayehu A, Alhassan RK, Ali MA, Almustanyir S, Al-Raddadi RM, Al-Rifai RH, Altirkawi KA, Alvand S, Alvis-Guzman N, Amer YSAD, Ameyaw EK, Amu H, Anagaw TF, Ancuceanu R, Anoushirvani AA, Antwi MH, Anvari D, Arabloo J, Aravkin AY, Ariffin H, Aripov T, Arja A, Arndt MB, Arulappan J, Aruleba RT, Ashraf T, Asresie MB, Athari SS, Atlaw D, Aujayeb A, Awoke AA, Awoke MA, Azadnajafabad S, Azangou-Khyavy M, B DB, Badawi A, Badiye AD, Baghcheghi N, Bagheri N, Bagherieh S, Baig AA, Banach M, Banik PC, Bantie AT, Barr RD, Barrow A, Bashiri A, Basu S, Batiha AMM, Begum T, Belete MA, Belo L, Bensenor IM, Berhie AY, Bhagavathula AS, et alGardner WM, Razo C, McHugh TA, Hagins H, Vilchis-Tella VM, Hennessy C, Taylor HJ, Perumal N, Fuller K, Cercy KM, Zoeckler LZ, Chen CS, Lim SS, Aali A, Abate KH, Abd-Elsalam S, Abdurehman AM, Abebe G, Abidi H, Aboagye RG, Abolhassani H, Aboye GBA, Abtew YD, Accrombessi MMK, Adane DEA, Adane TD, Addo IY, Adesina MA, Adeyinka DA, Adnani QES, Afzal MS, Afzal S, Agustina R, Ahinkorah BO, Ahmad A, Ahmad S, Ahmadi S, Ahmed A, Ahmed Rashid T, Aiman W, Ajami M, Akbarialiabad H, Alahdab F, Al-Aly Z, Alam N, Alemayehu A, Alhassan RK, Ali MA, Almustanyir S, Al-Raddadi RM, Al-Rifai RH, Altirkawi KA, Alvand S, Alvis-Guzman N, Amer YSAD, Ameyaw EK, Amu H, Anagaw TF, Ancuceanu R, Anoushirvani AA, Antwi MH, Anvari D, Arabloo J, Aravkin AY, Ariffin H, Aripov T, Arja A, Arndt MB, Arulappan J, Aruleba RT, Ashraf T, Asresie MB, Athari SS, Atlaw D, Aujayeb A, Awoke AA, Awoke MA, Azadnajafabad S, Azangou-Khyavy M, B DB, Badawi A, Badiye AD, Baghcheghi N, Bagheri N, Bagherieh S, Baig AA, Banach M, Banik PC, Bantie AT, Barr RD, Barrow A, Bashiri A, Basu S, Batiha AMM, Begum T, Belete MA, Belo L, Bensenor IM, Berhie AY, Bhagavathula AS, Bhardwaj N, Bhardwaj P, Bhat AN, Bhutta ZA, Bikbov B, Billah SM, Birara S, Bishai JD, Bitaraf S, Boloor A, Botelho JSB, Burkart K, Calina D, Cembranel F, Chakraborty PA, Chanie GS, Chattu VK, Chien JH, Chukwu IS, Chung E, Criqui MH, Cruz-Martins N, Dadras O, Dagnew GW, Dai X, Danawi HA, Dandona L, Dandona R, Darwesh AM, Das JK, Das S, De la Cruz-Góngora V, Demisse FW, Demissie S, Demsie DG, Desai HD, Desalegn MD, Dessalegn FN, Dessie G, Dharmaratne SD, Dhimal M, Dhingra S, Diaz D, Didehdar M, Dirac MA, Diress M, Doaei S, Dodangeh M, Doku PN, Dongarwar D, Dora BT, Dsouza HL, Edinur HA, Ekholuenetale M, Elagali AEM, Elbahnasawy MA, Elbarazi I, ElGohary GMT, Elhadi M, El-Huneidi W, Elmonem MA, Enyew DB, Eshetu HB, Ewald SB, Ezzeddini R, Fagbamigbe AF, Fasanmi AO, Fatehizadeh A, Fekadu G, Feyisa BR, Fischer F, Fitzgerald R, Foroutan M, Fowobaje KR, Gadanya MA, Gaidhane AM, Gaihre S, Gaipov A, Galali Y, Galehdar N, Garg P, Garg T, Gebremariam YH, Gebremedhin KB, Gebremichael B, Gela YY, Gerema U, Getacher L, Ghaffari K, Ghafourifard M, Ghamari SH, Ghasemi Nour M, Ghashghaee A, Gholamalizadeh M, Ghozy S, Gizaw ATT, Glasbey JC, Golechha M, Goleij P, Golitaleb M, Goulart AC, Goyomsa GG, Guadie HA, Gubari MIM, Gudisa Z, Gunawardane DA, Gupta R, Gupta RD, Gupta S, Gupta VK, Guta A, Habibzadeh P, Hamidi S, Handal AJ, Hanif A, Hannan MA, Harapan H, Harorani M, Hasaballah AI, Hasan MM, Hasani H, Hassankhani H, Hassen MB, Hay SI, Hayat K, Heidari G, Hess SY, Heyi DZ, Hezam K, Hiraike Y, Holla R, Hossain SJ, Hosseini K, Hosseini MS, Hosseinzadeh M, Hostiuc M, Hostiuc S, Huang J, Hussain S, Hussien FM, Ibitoye SE, Ilesanmi OS, Ilic IM, Immurana M, Inbaraj LR, Islam SMS, Ismail NE, J LM, Jamshidi E, Janodia MD, Jayarajah U, Jayaram S, Jebai R, Jemal B, Jeyakumar A, Jha RP, Jonas JB, Joseph N, Jozwiak JJ, Kabir A, Kalankesh LR, Kalhor R, Kamal VK, Kandel H, Kanko TK, Karaye IM, Kashoo FZ, Katoto PDMC, Kauppila JH, Kaur H, Kayode GA, Kebede AD, Keshri VR, Keykhaei M, Khader YS, Khajuria H, Khalid N, Khammarnia M, Khan IA, Khan MAB, Khatab K, Khazaei Z, Khubchandani J, Kim YJ, Kimokoti RW, Kisa S, Kompani F, Kosen S, Koulmane Laxminarayana SL, Krishan K, Kuate Defo B, Kuddus M, Kumar GA, Kumar N, Kumar N, Kurmi OP, Kuti O, Lal DK, Landires I, Larsson AO, Lassi ZS, Latief K, Laxmaiah A, Ledda C, Lee SW, Legesse SM, Liu X, Lorenzovici L, Machado VSM, Mahajan PB, Mahjoub S, Mahmoodpoor A, Mahmoudi E, Malakan Rad E, Mallhi TH, Malta DC, Masoudi S, Masoumi SZ, Medina JRC, Mejia-Rodriguez F, Mendes JJM, Mendoza W, Mendoza-Cano O, Mentis AFA, Meresa HA, Mestrovic T, Miazgowski T, Mirghafourvand M, Mirica A, Mirza M, Misganaw A, Misra S, Mohammad DK, Mohammadi S, Mohammed S, Mohan S, Moka N, Mokdad AH, Momtazmanesh S, Monasta L, Moni MA, Moosavi D, Moradi M, Mosapour A, Mostafavi E, Muche T, Mulita F, Mulu GB, Murray CJL, Musina AM, Mustafa G, Nagarajan AJ, Nair TS, Narasimha Swamy S, Nassereldine H, Natto ZS, Nayak BP, Naz S, Negoi I, Negoi RI, Nguefack-Tsague G, Ngunjiri JW, Niazi RK, Noori M, Nowroozi A, Nurrika D, Nuruzzaman KM, Nzoputam OJ, Oancea B, Obaidur RM, Obsa MMSS, Odhiambo JN, Ogunsakin RE, Okati-Aliabad H, Okonji OC, Oladunjoye AO, Oladunjoye OO, Olagunju AT, Olufadewa II, Omar Bali A, Omonisi AEE, Ortiz A, Owolabi MO, Padubidri JR, Pakzad R, Palicz T, Pandey A, Pandya AK, Papadopoulou P, Pardhan S, Patel J, Pathak A, Pathan AR, Paudel R, Paudel U, Pawar S, Pereira G, Perico N, Perna S, Perumalsamy N, Petcu IR, Pickering BV, Piracha ZZ, Pollok RCG, Pradhan PMS, Prashant A, Qattea I, Quazi Syed Z, Rahim F, Rahimi M, Rahman A, Rahman MHU, Rahman M, Rahmani AM, Rahmani S, Rai RK, Raimondo I, Rajaa S, Ram P, Rana J, Ranjha MMAN, Rao CR, Rao SJ, Rashedi S, Rashidi MM, Rawaf S, Rawal L, Raza RZ, Redwan EMM, Remuzzi G, Rezaei M, Rezaei N, Rezaei N, Richards T, Rickard J, Rodriguez JAB, Roever L, Roshandel G, Roy B, Rwegerera GM, Saad AMA, Sabour S, Saddik B, Sadeghi M, Sadeghian S, Saeed U, Sahebkar A, Sahoo H, Salem MR, Samy AM, Sankararaman S, Santoro R, Santos IS, Satpathy M, Saya GK, Seboka BT, Senbeta AM, Senthilkumaran S, Seylani A, Shafeghat M, Shah PA, Shaikh MA, Shanawaz M, Shannawaz M, Sharew MMS, Sharma P, Sheikhi RA, Shenoy SM, Shetty A, Shetty BSK, Shetty JK, Shetty PH, Shin JI, Shivalli S, Shivarov V, Shobeiri P, Shorofi SA, Sikder MK, Sima AR, Simegn W, Singh JA, Singh NP, Singh P, Singh S, Siraj MS, Sisay Y, Skryabina AA, Solomon Y, Song Y, Sorensen RJD, Stanaway JD, Suchdev PS, Sufiyan MB, Sultana S, Szeto MD, Tabaeian SP, Tahamtan A, Taheri M, Taheri Soodejani M, Tamir Z, Tan KK, Tariqujjaman M, Tarkang EE, Tat NY, Tefera YM, Temsah MH, Thapar R, Thiyagarajan A, Ticoalu JHV, Tigabu BM, Tiyuri A, Tobe-Gai R, Tovani-Palone MR, Tran MTN, Tusa BS, Ullah I, Umer AA, Unnikrishnan B, Vacante M, Valadan Tahbaz S, Valdez PR, Vart P, Varthya SB, Vaziri S, Verma MV, Veroux M, Vervoort D, Vu LG, Wagaye B, Weldegebreal F, Wickramasinghe ND, Woldemariam M, Wonde TE, Wubetie GA, Xu X, Yari K, Yazdanpanah F, Yehualashet SS, Yigit A, Yiğit V, Yisihak E, Yon DK, Yonemoto N, Young MF, Yu C, Yunusa I, Zahir M, Zaki L, Zaman BA, Zamora N, Zare I, Zareshahrabadi Z, Zenebe GA, Zhang ZJ, Zheng P, Zoladl M, Kassebaum NJ. Prevalence, years lived with disability, and trends in anaemia burden by severity and cause, 1990-2021: findings from the Global Burden of Disease Study 2021. Lancet Haematol 2023; 10:e713-e734. [PMID: 37536353 PMCID: PMC10465717 DOI: 10.1016/s2352-3026(23)00160-6] [Show More Authors] [Citation(s) in RCA: 151] [Impact Index Per Article: 75.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/09/2022] [Revised: 05/17/2023] [Accepted: 05/18/2023] [Indexed: 08/05/2023] [Imported: 04/16/2025]
Abstract
BACKGROUND Anaemia is a major health problem worldwide. Global estimates of anaemia burden are crucial for developing appropriate interventions to meet current international targets for disease mitigation. We describe the prevalence, years lived with disability, and trends of anaemia and its underlying causes in 204 countries and territories. METHODS We estimated population-level distributions of haemoglobin concentration by age and sex for each location from 1990 to 2021. We then calculated anaemia burden by severity and associated years lived with disability (YLDs). With data on prevalence of the causes of anaemia and associated cause-specific shifts in haemoglobin concentrations, we modelled the proportion of anaemia attributed to 37 underlying causes for all locations, years, and demographics in the Global Burden of Disease Study 2021. FINDINGS In 2021, the global prevalence of anaemia across all ages was 24·3% (95% uncertainty interval [UI] 23·9-24·7), corresponding to 1·92 billion (1·89-1·95) prevalent cases, compared with a prevalence of 28·2% (27·8-28·5) and 1·50 billion (1·48-1·52) prevalent cases in 1990. Large variations were observed in anaemia burden by age, sex, and geography, with children younger than 5 years, women, and countries in sub-Saharan Africa and south Asia being particularly affected. Anaemia caused 52·0 million (35·1-75·1) YLDs in 2021, and the YLD rate due to anaemia declined with increasing Socio-demographic Index. The most common causes of anaemia YLDs in 2021 were dietary iron deficiency (cause-specific anaemia YLD rate per 100 000 population: 422·4 [95% UI 286·1-612·9]), haemoglobinopathies and haemolytic anaemias (89·0 [58·2-123·7]), and other neglected tropical diseases (36·3 [24·4-52·8]), collectively accounting for 84·7% (84·1-85·2) of anaemia YLDs. INTERPRETATION Anaemia remains a substantial global health challenge, with persistent disparities according to age, sex, and geography. Estimates of cause-specific anaemia burden can be used to design locally relevant health interventions aimed at improving anaemia management and prevention. FUNDING Bill & Melinda Gates Foundation.
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Alvarez EM, Force LM, Xu R, Compton K, Lu D, Henrikson HJ, Kocarnik JM, Harvey JD, Pennini A, Dean FE, Fu W, Vargas MT, Keegan THM, Ariffin H, Barr RD, Erdomaeva YA, Gunasekera DS, John-Akinola YO, Ketterl TG, Kutluk T, Malogolowkin MH, Mathur P, Radhakrishnan V, Ries LAG, Rodriguez-Galindo C, Sagoyan GB, Sultan I, Abbasi B, Abbasi-Kangevari M, Abbasi-Kangevari Z, Abbastabar H, Abdelmasseh M, Abd-Elsalam S, Abdoli A, Abebe H, Abedi A, Abidi H, Abolhassani H, Abubaker Ali H, Abu-Gharbieh E, Achappa B, Acuna JM, Adedeji IA, Adegboye OA, Adnani QES, Advani SM, Afzal MS, Aghaie Meybodi M, Ahadinezhad B, Ahinkorah BO, Ahmad S, Ahmadi S, Ahmed MB, Ahmed Rashid T, Ahmed Salih Y, Aiman W, Akalu GT, Al Hamad H, Alahdab F, AlAmodi AA, Alanezi FM, Alanzi TM, Alem AZ, Alem DT, Alemayehu Y, Alhalaiqa FN, Alhassan RK, Ali S, Alicandro G, Alipour V, Aljunid SM, Alkhayyat M, Alluri S, Almasri NA, Al-Maweri SA, Almustanyir S, Al-Raddadi RM, Alvis-Guzman N, Ameyaw EK, Amini S, Amu H, Ancuceanu R, Andrei 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The global burden of adolescent and young adult cancer in 2019: a systematic analysis for the Global Burden of Disease Study 2019. Lancet Oncol 2022; 23:27-52. [PMID: 34871551 PMCID: PMC8716339 DOI: 10.1016/s1470-2045(21)00581-7] [Show More Authors] [Citation(s) in RCA: 144] [Impact Index Per Article: 48.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/05/2021] [Revised: 09/28/2021] [Accepted: 09/29/2021] [Indexed: 02/07/2023] [Imported: 04/16/2025]
Abstract
BACKGROUND In estimating the global burden of cancer, adolescents and young adults with cancer are often overlooked, despite being a distinct subgroup with unique epidemiology, clinical care needs, and societal impact. Comprehensive estimates of the global cancer burden in adolescents and young adults (aged 15-39 years) are lacking. To address this gap, we analysed results from the Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2019, with a focus on the outcome of disability-adjusted life-years (DALYs), to inform global cancer control measures in adolescents and young adults. METHODS Using the GBD 2019 methodology, international mortality data were collected from vital registration systems, verbal autopsies, and population-based cancer registry inputs modelled with mortality-to-incidence ratios (MIRs). Incidence was computed with mortality estimates and corresponding MIRs. Prevalence estimates were calculated using modelled survival and multiplied by disability weights to obtain years lived with disability (YLDs). Years of life lost (YLLs) were calculated as age-specific cancer deaths multiplied by the standard life expectancy at the age of death. The main outcome was DALYs (the sum of YLLs and YLDs). Estimates were presented globally and by Socio-demographic Index (SDI) quintiles (countries ranked and divided into five equal SDI groups), and all estimates were presented with corresponding 95% uncertainty intervals (UIs). For this analysis, we used the age range of 15-39 years to define adolescents and young adults. FINDINGS There were 1·19 million (95% UI 1·11-1·28) incident cancer cases and 396 000 (370 000-425 000) deaths due to cancer among people aged 15-39 years worldwide in 2019. The highest age-standardised incidence rates occurred in high SDI (59·6 [54·5-65·7] per 100 000 person-years) and high-middle SDI countries (53·2 [48·8-57·9] per 100 000 person-years), while the highest age-standardised mortality rates were in low-middle SDI (14·2 [12·9-15·6] per 100 000 person-years) and middle SDI (13·6 [12·6-14·8] per 100 000 person-years) countries. In 2019, adolescent and young adult cancers contributed 23·5 million (21·9-25·2) DALYs to the global burden of disease, of which 2·7% (1·9-3·6) came from YLDs and 97·3% (96·4-98·1) from YLLs. Cancer was the fourth leading cause of death and tenth leading cause of DALYs in adolescents and young adults globally. INTERPRETATION Adolescent and young adult cancers contributed substantially to the overall adolescent and young adult disease burden globally in 2019. These results provide new insights into the distribution and magnitude of the adolescent and young adult cancer burden around the world. With notable differences observed across SDI settings, these estimates can inform global and country-level cancer control efforts. FUNDING Bill & Melinda Gates Foundation, American Lebanese Syrian Associated Charities, St Baldrick's Foundation, and the National Cancer Institute.
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S, Yaghoobpour T, Yaghoubi S, Yahaya ZS, Yang D, Yang L, Yano Y, Yaribeygi H, Ye P, Yesodharan R, Yesuf SA, Yezli S, Yigezu A, Yip P, Yon DK, Yonemoto N, You Y, Younis MZ, Yousefi Z, Yu C, Yu Y, Yuan CW, Zafari N, Zakham F, Zaki N, Zamagni G, Zandi M, Zandieh GGZ, Zangiabadian M, Zastrozhin MS, Zhang H, Zhang M, Zhang Y, Zhong C, Zhou J, Zhu B, Zhu L, Zielińska M, Zou Z, Zyoud SH, Murray CJL, Smith AE, Vollset SE. Global fertility in 204 countries and territories, 1950-2021, with forecasts to 2100: a comprehensive demographic analysis for the Global Burden of Disease Study 2021. Lancet 2024; 403:2057-2099. [PMID: 38521087 PMCID: PMC11122687 DOI: 10.1016/s0140-6736(24)00550-6] [Show More Authors] [Citation(s) in RCA: 126] [Impact Index Per Article: 126.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 10/30/2023] [Revised: 12/28/2023] [Accepted: 03/15/2024] [Indexed: 03/25/2024] [Imported: 04/16/2025]
Abstract
BACKGROUND Accurate assessments of current and future fertility-including overall trends and changing population age structures across countries and regions-are essential to help plan for the profound social, economic, environmental, and geopolitical challenges that these changes will bring. Estimates and projections of fertility are necessary to inform policies involving resource and health-care needs, labour supply, education, gender equality, and family planning and support. The Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2021 produced up-to-date and comprehensive demographic assessments of key fertility indicators at global, regional, and national levels from 1950 to 2021 and forecast fertility metrics to 2100 based on a reference scenario and key policy-dependent alternative scenarios. METHODS To estimate fertility indicators from 1950 to 2021, mixed-effects regression models and spatiotemporal Gaussian process regression were used to synthesise data from 8709 country-years of vital and sample registrations, 1455 surveys and censuses, and 150 other sources, and to generate age-specific fertility rates (ASFRs) for 5-year age groups from age 10 years to 54 years. ASFRs were summed across age groups to produce estimates of total fertility rate (TFR). Livebirths were calculated by multiplying ASFR and age-specific female population, then summing across ages 10-54 years. To forecast future fertility up to 2100, our Institute for Health Metrics and Evaluation (IHME) forecasting model was based on projections of completed cohort fertility at age 50 years (CCF50; the average number of children born over time to females from a specified birth cohort), which yields more stable and accurate measures of fertility than directly modelling TFR. CCF50 was modelled using an ensemble approach in which three sub-models (with two, three, and four covariates variously consisting of female educational attainment, contraceptive met need, population density in habitable areas, and under-5 mortality) were given equal weights, and analyses were conducted utilising the MR-BRT (meta-regression-Bayesian, regularised, trimmed) tool. To capture time-series trends in CCF50 not explained by these covariates, we used a first-order autoregressive model on the residual term. CCF50 as a proportion of each 5-year ASFR was predicted using a linear mixed-effects model with fixed-effects covariates (female educational attainment and contraceptive met need) and random intercepts for geographical regions. Projected TFRs were then computed for each calendar year as the sum of single-year ASFRs across age groups. The reference forecast is our estimate of the most likely fertility future given the model, past fertility, forecasts of covariates, and historical relationships between covariates and fertility. We additionally produced forecasts for multiple alternative scenarios in each location: the UN Sustainable Development Goal (SDG) for education is achieved by 2030; the contraceptive met need SDG is achieved by 2030; pro-natal policies are enacted to create supportive environments for those who give birth; and the previous three scenarios combined. Uncertainty from past data inputs and model estimation was propagated throughout analyses by taking 1000 draws for past and present fertility estimates and 500 draws for future forecasts from the estimated distribution for each metric, with 95% uncertainty intervals (UIs) given as the 2·5 and 97·5 percentiles of the draws. To evaluate the forecasting performance of our model and others, we computed skill values-a metric assessing gain in forecasting accuracy-by comparing predicted versus observed ASFRs from the past 15 years (2007-21). A positive skill metric indicates that the model being evaluated performs better than the baseline model (here, a simplified model holding 2007 values constant in the future), and a negative metric indicates that the evaluated model performs worse than baseline. FINDINGS During the period from 1950 to 2021, global TFR more than halved, from 4·84 (95% UI 4·63-5·06) to 2·23 (2·09-2·38). Global annual livebirths peaked in 2016 at 142 million (95% UI 137-147), declining to 129 million (121-138) in 2021. Fertility rates declined in all countries and territories since 1950, with TFR remaining above 2·1-canonically considered replacement-level fertility-in 94 (46·1%) countries and territories in 2021. This included 44 of 46 countries in sub-Saharan Africa, which was the super-region with the largest share of livebirths in 2021 (29·2% [28·7-29·6]). 47 countries and territories in which lowest estimated fertility between 1950 and 2021 was below replacement experienced one or more subsequent years with higher fertility; only three of these locations rebounded above replacement levels. Future fertility rates were projected to continue to decline worldwide, reaching a global TFR of 1·83 (1·59-2·08) in 2050 and 1·59 (1·25-1·96) in 2100 under the reference scenario. The number of countries and territories with fertility rates remaining above replacement was forecast to be 49 (24·0%) in 2050 and only six (2·9%) in 2100, with three of these six countries included in the 2021 World Bank-defined low-income group, all located in the GBD super-region of sub-Saharan Africa. The proportion of livebirths occurring in sub-Saharan Africa was forecast to increase to more than half of the world's livebirths in 2100, to 41·3% (39·6-43·1) in 2050 and 54·3% (47·1-59·5) in 2100. The share of livebirths was projected to decline between 2021 and 2100 in most of the six other super-regions-decreasing, for example, in south Asia from 24·8% (23·7-25·8) in 2021 to 16·7% (14·3-19·1) in 2050 and 7·1% (4·4-10·1) in 2100-but was forecast to increase modestly in the north Africa and Middle East and high-income super-regions. Forecast estimates for the alternative combined scenario suggest that meeting SDG targets for education and contraceptive met need, as well as implementing pro-natal policies, would result in global TFRs of 1·65 (1·40-1·92) in 2050 and 1·62 (1·35-1·95) in 2100. The forecasting skill metric values for the IHME model were positive across all age groups, indicating that the model is better than the constant prediction. INTERPRETATION Fertility is declining globally, with rates in more than half of all countries and territories in 2021 below replacement level. Trends since 2000 show considerable heterogeneity in the steepness of declines, and only a small number of countries experienced even a slight fertility rebound after their lowest observed rate, with none reaching replacement level. Additionally, the distribution of livebirths across the globe is shifting, with a greater proportion occurring in the lowest-income countries. Future fertility rates will continue to decline worldwide and will remain low even under successful implementation of pro-natal policies. These changes will have far-reaching economic and societal consequences due to ageing populations and declining workforces in higher-income countries, combined with an increasing share of livebirths among the already poorest regions of the world. FUNDING Bill & Melinda Gates Foundation.
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Age-sex differences in the global burden of lower respiratory infections and risk factors, 1990-2019: results from the Global Burden of Disease Study 2019. THE LANCET. INFECTIOUS DISEASES 2022; 22:1626-1647. [PMID: 35964613 PMCID: PMC9605880 DOI: 10.1016/s1473-3099(22)00510-2] [Show More Authors] [Citation(s) in RCA: 122] [Impact Index Per Article: 40.7] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Subscribe] [Scholar Register] [Received: 02/22/2022] [Revised: 05/18/2022] [Accepted: 07/18/2022] [Indexed: 12/03/2022] [Imported: 04/16/2025]
Abstract
BACKGROUND The global burden of lower respiratory infections (LRIs) and corresponding risk factors in children older than 5 years and adults has not been studied as comprehensively as it has been in children younger than 5 years. We assessed the burden and trends of LRIs and risk factors across all age groups by sex, for 204 countries and territories. METHODS In this analysis of data for the Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2019, we used clinician-diagnosed pneumonia or bronchiolitis as our case definition for LRIs. We included International Classification of Diseases 9th edition codes 079.6, 466-469, 470.0, 480-482.8, 483.0-483.9, 484.1-484.2, 484.6-484.7, and 487-489 and International Classification of Diseases 10th edition codes A48.1, A70, B97.4-B97.6, J09-J15.8, J16-J16.9, J20-J21.9, J91.0, P23.0-P23.4, and U04-U04.9. We used the Cause of Death Ensemble modelling strategy to analyse 23 109 site-years of vital registration data, 825 site-years of sample vital registration data, 1766 site-years of verbal autopsy data, and 681 site-years of mortality surveillance data. We used DisMod-MR 2.1, a Bayesian meta-regression tool, to analyse age-sex-specific incidence and prevalence data identified via systematic reviews of the literature, population-based survey data, and claims and inpatient data. Additionally, we estimated age-sex-specific LRI mortality that is attributable to the independent effects of 14 risk factors. FINDINGS Globally, in 2019, we estimated that there were 257 million (95% uncertainty interval [UI] 240-275) LRI incident episodes in males and 232 million (217-248) in females. In the same year, LRIs accounted for 1·30 million (95% UI 1·18-1·42) male deaths and 1·20 million (1·07-1·33) female deaths. Age-standardised incidence and mortality rates were 1·17 times (95% UI 1·16-1·18) and 1·31 times (95% UI 1·23-1·41) greater in males than in females in 2019. Between 1990 and 2019, LRI incidence and mortality rates declined at different rates across age groups and an increase in LRI episodes and deaths was estimated among all adult age groups, with males aged 70 years and older having the highest increase in LRI episodes (126·0% [95% UI 121·4-131·1]) and deaths (100·0% [83·4-115·9]). During the same period, LRI episodes and deaths in children younger than 15 years were estimated to have decreased, and the greatest decline was observed for LRI deaths in males younger than 5 years (-70·7% [-77·2 to -61·8]). The leading risk factors for LRI mortality varied across age groups and sex. More than half of global LRI deaths in children younger than 5 years were attributable to child wasting (population attributable fraction [PAF] 53·0% [95% UI 37·7-61·8] in males and 56·4% [40·7-65·1] in females), and more than a quarter of LRI deaths among those aged 5-14 years were attributable to household air pollution (PAF 26·0% [95% UI 16·6-35·5] for males and PAF 25·8% [16·3-35·4] for females). PAFs of male LRI deaths attributed to smoking were 20·4% (95% UI 15·4-25·2) in those aged 15-49 years, 30·5% (24·1-36·9) in those aged 50-69 years, and 21·9% (16·8-27·3) in those aged 70 years and older. PAFs of female LRI deaths attributed to household air pollution were 21·1% (95% UI 14·5-27·9) in those aged 15-49 years and 18·2% (12·5-24·5) in those aged 50-69 years. For females aged 70 years and older, the leading risk factor, ambient particulate matter, was responsible for 11·7% (95% UI 8·2-15·8) of LRI deaths. INTERPRETATION The patterns and progress in reducing the burden of LRIs and key risk factors for mortality varied across age groups and sexes. The progress seen in children younger than 5 years was clearly a result of targeted interventions, such as vaccination and reduction of exposure to risk factors. Similar interventions for other age groups could contribute to the achievement of multiple Sustainable Development Goals targets, including promoting wellbeing at all ages and reducing health inequalities. Interventions, including addressing risk factors such as child wasting, smoking, ambient particulate matter pollution, and household air pollution, would prevent deaths and reduce health disparities. FUNDING Bill & Melinda Gates Foundation.
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Saqib MAN, Siddiqui S, Qasim M, Jamil MA, Rafique I, Awan UA, Ahmad H, Afzal MS. Effect of COVID-19 lockdown on patients with chronic diseases. Diabetes Metab Syndr 2020; 14:1621-1623. [PMID: 32889403 PMCID: PMC7450263 DOI: 10.1016/j.dsx.2020.08.028] [Citation(s) in RCA: 105] [Impact Index Per Article: 21.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 08/16/2020] [Revised: 08/20/2020] [Accepted: 08/24/2020] [Indexed: 01/08/2023] [Imported: 04/16/2025]
Abstract
BACKGROUND AND AIMS We sought to measure the effect of lockdown, implemented to contain COVID-19 infection, on routine living and health of patients with chronic diseases and challenges faced by them. METHODS A semi-structured online questionnaire was generated using "Google forms" and sent to the patients with chronic diseases using WhatsApp. Data were retrieved and analyzed using SPSS. RESULTS Out of 181 participants, 98% reported effect of lockdown on their routine living while 45% reported an effect on their health. The key challenges due to lockdown were to do daily exercise, missed routine checkup/lab testing and daily health care. CONCLUSION It is important to strategize the plan for patients with chronic diseases during pandemic or lockdown.
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Micah AE, Bhangdia K, Cogswell IE, Lasher D, Lidral-Porter B, Maddison ER, Nguyen TNN, Patel N, Pedroza P, Solorio J, Stutzman H, Tsakalos G, Wang Y, Warriner W, Zhao Y, Zlavog BS, Abbafati C, Abbas J, Abbasi-Kangevari M, Abbasi-Kangevari Z, Abdelmasseh M, Abdulah DM, Abedi A, Abegaz KH, Abhilash ES, Aboagye RG, Abolhassani H, Abrigo MRM, Abubaker Ali H, Abu-Gharbieh E, Adem MH, Afzal MS, Ahmadi A, Ahmed H, Ahmed Rashid T, Aji B, Akbarialiabad H, Akelew Y, Al Hamad H, Alam K, Alanezi FM, Alanzi TM, Al-Hanawi MK, Alhassan RK, Aljunid SM, Almustanyir S, Al-Raddadi RM, Alvis-Guzman N, Alvis-Zakzuk NJ, Amare AT, Ameyaw EK, Amini-Rarani M, Amu H, Ancuceanu R, Andrei T, Anwar SL, Appiah F, Aqeel M, Arabloo J, Arab-Zozani M, Aravkin AY, Aremu O, Aruleba RT, Athari SS, Avila-Burgos L, Ayanore MA, Azari S, Baig AA, Bantie AT, Barrow A, Baskaran P, Basu S, Batiha AMM, Baune BT, Berezvai Z, Bhardwaj N, Bhardwaj P, Bhaskar S, Boachie MK, Bodolica V, Botelho JSB, Braithwaite D, Breitborde NJK, Busse R, Cahuana-Hurtado L, Catalá-López F, Chansa C, Charan J, Chattu VK, Chen S, Chukwu IS, Dadras O, Dandona L, Dandona R, Dargahi A, Debela SA, Denova-Gutiérrez E, Desye B, Dharmaratne SD, Diao N, et alMicah AE, Bhangdia K, Cogswell IE, Lasher D, Lidral-Porter B, Maddison ER, Nguyen TNN, Patel N, Pedroza P, Solorio J, Stutzman H, Tsakalos G, Wang Y, Warriner W, Zhao Y, Zlavog BS, Abbafati C, Abbas J, Abbasi-Kangevari M, Abbasi-Kangevari Z, Abdelmasseh M, Abdulah DM, Abedi A, Abegaz KH, Abhilash ES, Aboagye RG, Abolhassani H, Abrigo MRM, Abubaker Ali H, Abu-Gharbieh E, Adem MH, Afzal MS, Ahmadi A, Ahmed H, Ahmed Rashid T, Aji B, Akbarialiabad H, Akelew Y, Al Hamad H, Alam K, Alanezi FM, Alanzi TM, Al-Hanawi MK, Alhassan RK, Aljunid SM, Almustanyir S, Al-Raddadi RM, Alvis-Guzman N, Alvis-Zakzuk NJ, Amare AT, Ameyaw EK, Amini-Rarani M, Amu H, Ancuceanu R, Andrei T, Anwar SL, Appiah F, Aqeel M, Arabloo J, Arab-Zozani M, Aravkin AY, Aremu O, Aruleba RT, Athari SS, Avila-Burgos L, Ayanore MA, Azari S, Baig AA, Bantie AT, Barrow A, Baskaran P, Basu S, Batiha AMM, Baune BT, Berezvai Z, Bhardwaj N, Bhardwaj P, Bhaskar S, Boachie MK, Bodolica V, Botelho JSB, Braithwaite D, Breitborde NJK, Busse R, Cahuana-Hurtado L, Catalá-López F, Chansa C, Charan J, Chattu VK, Chen S, Chukwu IS, Dadras O, Dandona L, Dandona R, Dargahi A, Debela SA, Denova-Gutiérrez E, Desye B, Dharmaratne SD, Diao N, Doan LP, Dodangeh M, dos Santos WM, Doshmangir L, Dube J, Eini E, El Sayed Zaki M, El Tantawi M, Enyew DB, Eskandarieh S, Ezati Asar M, Fagbamigbe AF, Faraon EJA, Fatehizadeh A, Fattahi H, Fekadu G, Fischer F, Foigt NA, Fowobaje KR, Freitas A, Fukumoto T, Fullman N, Gaal PA, Gamkrelidze A, Garcia-Gordillo MA, Gebrehiwot M, Gerema U, Ghafourifard M, Ghamari SH, Ghanbari R, Ghashghaee A, Gholamrezanezhad A, Golechha M, Golinelli D, Goshu YA, Goyomsa GG, Guha A, Gunawardane DA, Gupta B, Hamidi S, Harapan H, Hashempour R, Hayat K, Heidari G, Heredia-Pi I, Herteliu C, Heyi DZ, Hezam K, Hiraike Y, Hlongwa MM, Holla R, Hoque ME, Hosseinzadeh M, Hostiuc S, Hussain S, Ilesanmi OS, Immurana M, Iradukunda A, Ismail NE, Isola G, J LM, Jakovljevic M, Jalili M, Janodia MD, Javaheri T, Jayapal SK, Jemere DM, Joo T, Joseph N, Jozwiak JJ, Jürisson M, Kaambwa B, Kadashetti V, Kadel R, Kadir DH, Kalankesh LR, Kamath R, Kandel H, Kantar RS, Karanth SD, Karaye IM, Karimi SE, Kassa BG, Kayode GA, Keikavoosi-Arani L, Keshri VR, Keskin C, Khader YS, Khafaie MA, Khajuria H, Khayat Kashani HR, Kifle ZD, Kim H, Kim J, Kim MS, Kim YJ, Kisa A, Kohler S, Kompani F, Kosen S, Koulmane Laxminarayana SL, Koyanagi A, Krishan K, Kusuma D, Lám J, Lamnisos D, Larsson AO, Lee SW, Lee SWH, Lee WC, Lee YH, Lenzi J, Lim LL, Lorenzovici L, Lozano R, Machado VSM, Madadizadeh F, Magdy Abd El Razek M, Mahmoudi R, Majeed A, Malekpour MR, Manda AL, Mansouri B, Mansournia MA, Mantovani LG, Marrugo Arnedo CA, Martorell M, Masoud A, Mathews E, Maude RJ, Mechili EA, Mehrabi Nasab E, Mendes JJJM, Meretoja A, Meretoja TJ, Mesregah MK, Mestrovic T, Mirica A, Mirrakhimov EM, Mirutse MK, Mirza M, Mirza-Aghazadeh-Attari M, Misganaw A, Moccia M, Moghadasi J, Mohammadi E, Mohammadi M, Mohammadian-Hafshejani A, Mohammadshahi M, Mohammed S, Mohseni M, Mokdad AH, Monasta L, Mossialos E, Mostafavi E, Mousavi Isfahani H, Mpundu-Kaambwa C, Murthy S, Muthupandian S, Nagarajan AJ, Naidoo KS, Naimzada MD, Nangia V, Naqvi AA, Nayak BP, Ndejjo R, Nguyen TH, Noroozi N, Noubiap JJ, Nuruzzaman KM, Nzoputam CI, Nzoputam OJ, Oancea B, Obi FCA, Ogunkoya A, Oh IH, Okonji OC, Olagunju AT, Olagunju TO, Olakunde BO, Omar Bali A, Onwujekwe OE, Opio JN, Otoiu A, Otstavnov N, Otstavnov SS, Owolabi MO, Palicz T, Palladino R, Pana A, Parekh T, Pasupula DK, Patel J, Patton GC, Paudel U, Paun M, Pawar S, Perna S, Perumalsamy N, Petcu IR, Piracha ZZ, Poursadeqiyan M, Pourtaheri N, Prada SI, Rafiei S, Raghav PR, Rahim F, Rahman MHU, Rahman M, Rahmani AM, Ranabhat CL, Raru TB, Rashedi S, Rashidi MM, Ravangard R, Rawaf S, Rawassizadeh R, Redwan EMM, Reiner RC, Renzaho AMN, Rezaei M, Rezaei N, Riaz MA, Rodriguez JAB, Saad AMA, Saddik B, Sadeghian S, Saeb MR, Saeed U, Sahu M, Saki M, Salamati P, Salari H, Salehi S, Samy AM, Sanabria J, Sanmarchi F, Santos JV, Santric-Milicevic MM, Sao Jose BP, Sarikhani Y, Sathian B, Satpathy M, Savic M, Sayadi Y, Schwendicke F, Senthilkumaran S, Sepanlou SG, Serván-Mori E, Setshegetso N, Seylani A, Shahabi S, Shaikh MA, Shakhmardanov MZ, Shanawaz M, Sharew MMS, Sharew NT, Sharma R, Shayan M, Sheikh A, Shenoy SM, Shetty A, Shetty PH, Shivakumar KM, Silva LMLR, Simegn W, Singh JA, Singh K, Skhvitaridze N, Skryabin VY, Skryabina AA, Socea B, Solomon Y, Song S, Ștefan SC, Suleman M, Tabarés-Seisdedos R, Tat NY, Tat VY, Tefera BN, Tichopad A, Tobe-Gai R, Tovani-Palone MR, Tudor Car L, Tufa DG, Vasankari TJ, Vasic M, Vervoort D, Vlassov V, Vo B, Vu LG, Waheed Y, Wamai RG, Wang C, Wassie GT, Wickramasinghe ND, Yaya S, Yigit A, Yiğit V, Yonemoto N, Younis MZ, Yu C, Yunusa I, Zaki L, Zaman BA, Zangeneh A, Zare Dehnavi A, Zastrozhin MS, Zeng W, Zhang ZJ, Zuhlke LJ, Zuniga YMH, Hay SI, Murray CJL, Dieleman JL. Global investments in pandemic preparedness and COVID-19: development assistance and domestic spending on health between 1990 and 2026. Lancet Glob Health 2023; 11:e385-e413. [PMID: 36706770 PMCID: PMC9998276 DOI: 10.1016/s2214-109x(23)00007-4] [Show More Authors] [Citation(s) in RCA: 103] [Impact Index Per Article: 51.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/15/2022] [Revised: 11/08/2022] [Accepted: 12/17/2022] [Indexed: 01/26/2023] [Imported: 04/16/2025]
Abstract
BACKGROUND The COVID-19 pandemic highlighted gaps in health surveillance systems, disease prevention, and treatment globally. Among the many factors that might have led to these gaps is the issue of the financing of national health systems, especially in low-income and middle-income countries (LMICs), as well as a robust global system for pandemic preparedness. We aimed to provide a comparative assessment of global health spending at the onset of the pandemic; characterise the amount of development assistance for pandemic preparedness and response disbursed in the first 2 years of the COVID-19 pandemic; and examine expectations for future health spending and put into context the expected need for investment in pandemic preparedness. METHODS In this analysis of global health spending between 1990 and 2021, and prediction from 2021 to 2026, we estimated four sources of health spending: development assistance for health (DAH), government spending, out-of-pocket spending, and prepaid private spending across 204 countries and territories. We used the Organisation for Economic Co-operation and Development (OECD)'s Creditor Reporting System (CRS) and the WHO Global Health Expenditure Database (GHED) to estimate spending. We estimated development assistance for general health, COVID-19 response, and pandemic preparedness and response using a keyword search. Health spending estimates were combined with estimates of resources needed for pandemic prevention and preparedness to analyse future health spending patterns, relative to need. FINDINGS In 2019, at the onset of the COVID-19 pandemic, US$9·2 trillion (95% uncertainty interval [UI] 9·1-9·3) was spent on health worldwide. We found great disparities in the amount of resources devoted to health, with high-income countries spending $7·3 trillion (95% UI 7·2-7·4) in 2019; 293·7 times the $24·8 billion (95% UI 24·3-25·3) spent by low-income countries in 2019. That same year, $43·1 billion in development assistance was provided to maintain or improve health. The pandemic led to an unprecedented increase in development assistance targeted towards health; in 2020 and 2021, $1·8 billion in DAH contributions was provided towards pandemic preparedness in LMICs, and $37·8 billion was provided for the health-related COVID-19 response. Although the support for pandemic preparedness is 12·2% of the recommended target by the High-Level Independent Panel (HLIP), the support provided for the health-related COVID-19 response is 252·2% of the recommended target. Additionally, projected spending estimates suggest that between 2022 and 2026, governments in 17 (95% UI 11-21) of the 137 LMICs will observe an increase in national government health spending equivalent to an addition of 1% of GDP, as recommended by the HLIP. INTERPRETATION There was an unprecedented scale-up in DAH in 2020 and 2021. We have a unique opportunity at this time to sustain funding for crucial global health functions, including pandemic preparedness. However, historical patterns of underfunding of pandemic preparedness suggest that deliberate effort must be made to ensure funding is maintained. FUNDING Bill & Melinda Gates Foundation.
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Haakenstad A, Yearwood JA, Fullman N, Bintz C, Bienhoff K, Weaver MR, Nandakumar V, LeGrand KE, Knight M, Abbafati C, Abbasi-Kangevari M, Abdoli A, Abeldaño Zuñiga RA, Adedeji IA, Adekanmbi V, Adetokunboh OO, Afzal MS, Afzal S, Agudelo-Botero M, Ahinkorah BO, Ahmad S, Ahmadi A, Ahmadi S, Ahmed A, Ahmed Rashid T, Aji B, Akande-Sholabi W, Alam K, Al Hamad H, Alhassan RK, Ali L, Alipour V, Aljunid SM, Ameyaw EK, Amin TT, Amu H, Amugsi DA, Ancuceanu R, Andrade PP, Anjum A, Arabloo J, Arab-Zozani M, Ariffin H, Arulappan J, Aryan Z, Ashraf T, Atnafu DD, Atreya A, Ausloos M, Avila-Burgos L, Ayano G, Ayanore MA, Azari S, Badiye AD, Baig AA, Bairwa M, Bakkannavar SM, Baliga S, Banik PC, Bärnighausen TW, Barra F, Barrow A, Basu S, Bayati M, Belete R, Bell AW, Bhagat DS, Bhagavathula AS, Bhardwaj P, Bhardwaj N, Bhaskar S, Bhattacharyya K, Bhurtyal A, Bhutta ZA, Bibi S, Bijani A, Bikbov B, Biondi A, Bolarinwa OA, Bonny A, Brenner H, Buonsenso D, Burkart K, Busse R, Butt ZA, Butt NS, Caetano dos Santos FL, Cahuana-Hurtado L, Cámera LA, Cárdenas R, Carneiro VLA, Catalá-López F, Chandan JS, Charan J, Chavan PP, Chen S, Chen S, Choudhari SG, Chowdhury EK, Chowdhury MAK, et alHaakenstad A, Yearwood JA, Fullman N, Bintz C, Bienhoff K, Weaver MR, Nandakumar V, LeGrand KE, Knight M, Abbafati C, Abbasi-Kangevari M, Abdoli A, Abeldaño Zuñiga RA, Adedeji IA, Adekanmbi V, Adetokunboh OO, Afzal MS, Afzal S, Agudelo-Botero M, Ahinkorah BO, Ahmad S, Ahmadi A, Ahmadi S, Ahmed A, Ahmed Rashid T, Aji B, Akande-Sholabi W, Alam K, Al Hamad H, Alhassan RK, Ali L, Alipour V, Aljunid SM, Ameyaw EK, Amin TT, Amu H, Amugsi DA, Ancuceanu R, Andrade PP, Anjum A, Arabloo J, Arab-Zozani M, Ariffin H, Arulappan J, Aryan Z, Ashraf T, Atnafu DD, Atreya A, Ausloos M, Avila-Burgos L, Ayano G, Ayanore MA, Azari S, Badiye AD, Baig AA, Bairwa M, Bakkannavar SM, Baliga S, Banik PC, Bärnighausen TW, Barra F, Barrow A, Basu S, Bayati M, Belete R, Bell AW, Bhagat DS, Bhagavathula AS, Bhardwaj P, Bhardwaj N, Bhaskar S, Bhattacharyya K, Bhurtyal A, Bhutta ZA, Bibi S, Bijani A, Bikbov B, Biondi A, Bolarinwa OA, Bonny A, Brenner H, Buonsenso D, Burkart K, Busse R, Butt ZA, Butt NS, Caetano dos Santos FL, Cahuana-Hurtado L, Cámera LA, Cárdenas R, Carneiro VLA, Catalá-López F, Chandan JS, Charan J, Chavan PP, Chen S, Chen S, Choudhari SG, Chowdhury EK, Chowdhury MAK, Cirillo M, Corso B, Dadras O, Dahlawi SMA, Dai X, Dandona L, Dandona R, Dangel WJ, Dávila-Cervantes CA, Davletov K, Deuba K, Dhimal M, Dhimal ML, Djalalinia S, Do HP, Doshmangir L, Duncan BB, Effiong A, Ehsani-Chimeh E, Elgendy IY, Elhadi M, El Sayed I, El Tantawi M, Erku DA, Eskandarieh S, Fares J, Farzadfar F, Ferrero S, Ferro Desideri L, Fischer F, Foigt NA, Foroutan M, Fukumoto T, Gaal PA, Gaihre S, Gardner WM, Garg T, Getachew Obsa A, Ghafourifard M, Ghashghaee A, Ghith N, Gilani SA, Gill PS, Goharinezhad S, Golechha M, Guadamuz JS, Guo Y, Gupta RD, Gupta R, Gupta VK, Gupta VB, Hamiduzzaman M, Hanif A, Haro JM, Hasaballah AI, Hasan MM, Hasan MT, Hashi A, Hay SI, Hayat K, Heidari M, Heidari G, Henry NJ, Herteliu C, Holla R, Hossain S, Hossain SJ, Hossain MBH, Hosseinzadeh M, Hostiuc S, Hoveidamanesh S, Hsieh VCR, Hu G, Huang J, Huda MM, Ifeagwu SC, Ikuta KS, Ilesanmi OS, Irvani SSN, Islam RM, Islam SMS, Ismail NE, Iso H, Isola G, Itumalla R, Iwagami M, Jahani MA, Jahanmehr N, Jain R, Jakovljevic M, Janodia MD, Jayapal SK, Jayaram S, Jha RP, Jonas JB, Joo T, Joseph N, Jürisson M, Kabir A, Kalankesh LR, Kalhor R, Kamath AM, Kamenov K, Kandel H, Kantar RS, Kapoor N, Karanikolos M, Katikireddi SV, Kavetskyy T, Kawakami N, Kayode GA, Keikavoosi-Arani L, Keykhaei M, Khader YS, Khajuria H, Khalilov R, Khammarnia M, Khan MN, Khan MAB, Khan M, Khezeli M, Kim MS, Kim YJ, Kisa S, Kisa A, Klymchuk V, Koly KN, Korzh O, Kosen S, Koul PA, Kuate Defo B, Kumar GA, Kusuma D, Kyu HH, Larsson AO, Lasrado S, Lee WC, Lee YH, Lee CB, Li S, Lucchetti G, Mahajan PB, Majeed A, Makki A, Malekzadeh R, Malik AA, Malta DC, Mansournia MA, Mantovani LG, Martinez-Valle A, Martins-Melo FR, Masoumi SZ, Mathur MR, Maude RJ, Maulik PK, McKee M, Mendoza W, Menezes RG, Mensah GA, Meretoja A, Meretoja TJ, Mestrovic T, Michalek IM, Mirrakhimov EM, Misganaw A, Misra S, Moazen B, Mohammadi M, Mohammed S, Moitra M, Mokdad AH, Molokhia M, Monasta L, Moni MA, Moradi G, Moreira RS, Mosser JF, Mostafavi E, Mouodi S, Nagarajan AJ, Nagata C, Naghavi M, Nangia V, Narasimha Swamy S, Narayana AI, Nascimento BR, Nassereldine H, Nayak BP, Nazari J, Negoi I, Nepal S, Neupane Kandel S, Ngunjiri JW, Nguyen HLT, Nguyen CT, Ningrum DNA, Noubiap JJ, Oancea B, Oghenetega OB, Oh IH, Olagunju AT, Olakunde BO, Omar Bali A, Omer E, Onwujekwe OE, Otoiu A, Padubidri JR, Palladino R, Pana A, Panda-Jonas S, Pandi-Perumal SR, Pardhan S, Pasupula DK, Pathak PK, Patton GC, Pawar S, Pereira J, Pilania M, Piroozi B, Podder V, Pokhrel KN, Postma MJ, Prada SI, Quazi Syed Z, Rabiee N, Radhakrishnan RA, Rahman MM, Rahman M, Rahman M, Rahman MHU, Rahmani AM, Ranabhat CL, Rao CR, Rao SJ, Rasella D, Rawaf S, Rawaf DL, Rawal L, Renzaho AM, Reshmi B, Resnikoff S, Rezapour A, Riahi SM, Ripon RK, Sacco S, Sadeghi M, Saeed U, Sahebkar A, Sahiledengle B, Sahoo H, Sahu M, Salama JS, Salamati P, Samy AM, Sanabria J, Santric-Milicevic MM, Sathian B, Sawhney M, Schmidt MI, Seidu AA, Sepanlou SG, Seylani A, Shaikh MA, Sheikh A, Shetty A, Shigematsu M, Shiri R, Shivakumar KM, Shokri A, Singh JA, Sinha DN, Skryabin VY, Skryabina AA, Sofi-Mahmudi A, Sousa RARC, Stephens JH, Sun J, Szócska M, Tabarés-Seisdedos R, Tadbiri H, Tamiru AT, Thankappan KR, Topor-Madry R, Tovani-Palone MR, Tran MTN, Tran BX, Tripathi N, Tripathy JP, Troeger CE, Uezono DR, Ullah S, Ullah A, Unnikrishnan B, Vacante M, Valadan Tahbaz S, Valdez PR, Vasic M, Veroux M, Vervoort D, Violante FS, Vladimirov SK, Vlassov V, Vo B, Waheed Y, Wamai RG, Wang YP, Wang Y, Ward P, Wiangkham T, Yadav L, Yahyazadeh Jabbari SH, Yamagishi K, Yaya S, Yazdi-Feyzabadi V, Yi S, Yiğit V, Yonemoto N, Younis MZ, Yu C, Yunusa I, Zaman SB, Zastrozhin MS, Zhang ZJ, Zhong C, Zuniga YMH, Lim SS, Murray CJL, Lozano R. Assessing performance of the Healthcare Access and Quality Index, overall and by select age groups, for 204 countries and territories, 1990-2019: a systematic analysis from the Global Burden of Disease Study 2019. Lancet Glob Health 2022; 10:e1715-e1743. [PMID: 36209761 PMCID: PMC9666426 DOI: 10.1016/s2214-109x(22)00429-6] [Show More Authors] [Citation(s) in RCA: 92] [Impact Index Per Article: 30.7] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/01/2021] [Revised: 05/13/2022] [Accepted: 09/23/2022] [Indexed: 11/05/2022] [Imported: 04/16/2025]
Abstract
BACKGROUND Health-care needs change throughout the life course. It is thus crucial to assess whether health systems provide access to quality health care for all ages. Drawing from the Global Burden of Diseases, Injuries, and Risk Factors Study 2019 (GBD 2019), we measured the Healthcare Access and Quality (HAQ) Index overall and for select age groups in 204 locations from 1990 to 2019. METHODS We distinguished the overall HAQ Index (ages 0-74 years) from scores for select age groups: the young (ages 0-14 years), working (ages 15-64 years), and post-working (ages 65-74 years) groups. For GBD 2019, HAQ Index construction methods were updated to use the arithmetic mean of scaled mortality-to-incidence ratios (MIRs) and risk-standardised death rates (RSDRs) for 32 causes of death that should not occur in the presence of timely, quality health care. Across locations and years, MIRs and RSDRs were scaled from 0 (worst) to 100 (best) separately, putting the HAQ Index on a different relative scale for each age group. We estimated absolute convergence for each group on the basis of whether the HAQ Index grew faster in absolute terms between 1990 and 2019 in countries with lower 1990 HAQ Index scores than countries with higher 1990 HAQ Index scores and by Socio-demographic Index (SDI) quintile. SDI is a summary metric of overall development. FINDINGS Between 1990 and 2019, the HAQ Index increased overall (by 19·6 points, 95% uncertainty interval 17·9-21·3), as well as among the young (22·5, 19·9-24·7), working (17·2, 15·2-19·1), and post-working (15·1, 13·2-17·0) age groups. Large differences in HAQ Index scores were present across SDI levels in 2019, with the overall index ranging from 30·7 (28·6-33·0) on average in low-SDI countries to 83·4 (82·4-84·3) on average in high-SDI countries. Similarly large ranges between low-SDI and high-SDI countries, respectively, were estimated in the HAQ Index for the young (40·4-89·0), working (33·8-82·8), and post-working (30·4-79·1) groups. Absolute convergence in HAQ Index was estimated in the young group only. In contrast, divergence was estimated among the working and post-working groups, driven by slow progress in low-SDI countries. INTERPRETATION Although major gaps remain across levels of social and economic development, convergence in the young group is an encouraging sign of reduced disparities in health-care access and quality. However, divergence in the working and post-working groups indicates that health-care access and quality is lagging at lower levels of social and economic development. To meet the needs of ageing populations, health systems need to improve health-care access and quality for working-age adults and older populations while continuing to realise gains among the young. FUNDING Bill & Melinda Gates Foundation.
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Hafeez A, Dangel WJ, Ostroff SM, Kiani AG, Glenn SD, Abbas J, Afzal MS, Afzal S, Ahmad S, Ahmed A, Ahmed H, Ali L, Ali M, Ali Z, Arshad M, Ashraf T, Bhutta ZA, Bibi S, Butt ZA, Das JK, Fadoo Z, Hanif A, Hayat K, Humayun A, Iqbal K, Iqbal U, Khalid N, Khan EA, Khan MS, Malik AA, Naveed M, Naz S, Niazi RK, Piracha ZZ, Saeed U, Salman M, Samad Z, Saqib MAN, Shah SM, Shahid I, Shaikh MA, Shamshad H, Shuja KH, Suleman M, Ullah A, Ullah I, Ullah S, Ullah S, Waheed Y, Waris A, Hay SI, Murray CJL, Mokdad AH. The state of health in Pakistan and its provinces and territories, 1990-2019: a systematic analysis for the Global Burden of Disease Study 2019. Lancet Glob Health 2023; 11:e229-e243. [PMID: 36669807 PMCID: PMC10009760 DOI: 10.1016/s2214-109x(22)00497-1] [Citation(s) in RCA: 77] [Impact Index Per Article: 38.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/10/2022] [Revised: 09/22/2022] [Accepted: 11/04/2022] [Indexed: 01/20/2023] [Imported: 04/16/2025]
Abstract
BACKGROUND Understanding health trends and estimating the burden of disease at the national and subnational levels helps policy makers track progress and identify disparities in overall health performance. The Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2019 provides comprehensive estimates for Pakistan. Comparison of health indicators since 1990 provides valuable insights about Pakistan's ability to strengthen its health-care system, reduce inequalities, improve female and child health outcomes, achieve universal health coverage, and meet the UN Sustainable Development Goals. We present estimates of the burden of disease, injuries, and risk factors for Pakistan provinces and territories from 1990 to 2019 based on GBD 2019 to improve health and health outcomes in the country. METHODS We used methods and data inputs from GBD 2019 to estimate socio-demographic index, total fertility rate, cause-specific deaths, years of life lost, years lived with disability, disability-adjusted life-years, healthy life expectancy, and risk factors for 286 causes of death and 369 causes of non-fatal health loss in Pakistan and its four provinces and three territories from 1990 to 2019. To generate estimates for Pakistan at the national and subnational levels, we used 68 location-years of data to estimate Pakistan-specific demographic indicators, 316 location-years of data for Pakistan-specific causes of death, 579 location-years of data for Pakistan-specific non-fatal outcomes, 296 location-years of data for Pakistan-specific risk factors, and 3089 location-years of data for Pakistan-specific covariates. FINDINGS Life expectancy for both sexes in Pakistan increased nationally from 61·1 (95% uncertainty interval [UI] 60·0-62·1) years in 1990 to 65·9 (63·8-67·8) years in 2019; however, these gains were not uniform across the provinces and federal territories. Pakistan saw a narrowing of the difference in healthy life expectancy between the sexes from 1990 to 2019, as health gains for women occurred at faster rates than for men. For women, life expectancy increased by 8·2% (95% UI 6·3-13·8) between 1990 and 2019, whereas the male life expectancy increased by 7·6% (3·5-11·8). Neonatal disorders, followed by ischaemic heart disease, stroke, diarrhoeal diseases, and lower respiratory infections were the leading causes of all-age premature mortality in 2019. Child and maternal malnutrition, air pollution, high systolic blood pressure, dietary risks, and tobacco consumption were the leading all-age risk factors for death and disability-adjusted life-years at the national level in 2019. Five non-communicable diseases-ischaemic heart disease, stroke, congenital defects, cirrhosis, and chronic kidney disease-were among the ten leading causes of years of life lost in Pakistan. Burden varied by socio-demographic index. Notably, Balochistan and Khyber Pakhtunkhwa had the lowest observed gains in life expectancy. Dietary iron deficiency was the leading cause of years lived with disability for both men and women in 1990 and 2019. Low birthweight and short gestation and particulate matter pollution were the leading contributors to overall disease burden in both 1990 and 2019 despite moderate improvements, with a 23·5% (95% UI 3·8-39·2) and 27·6% (14·3-38·6) reduction in age-standardised attributable DALY rates during the study period. INTERPRETATION Our study shows that progress has been made on reducing Pakistan's disease burden since 1990, but geographical, age, and sex disparities persist. Equitable investment in the health system, as well as the prioritisation of high-impact policy interventions and programmes, are needed to save lives and improve health outcomes. Pakistan is facing several domestic and foreign challenges-the Taliban's return to power in Afghanistan, political turmoil, catastrophic flooding, the COVID-19 pandemic-that will shape the trajectory of the country's health and development. Pakistan must address the burden of infectious disease and curb rising rates of non-communicable diseases. Prioritising these three areas will enhance Pakistan's ability to achieve universal health coverage, meet its Sustainable Development Goals, and improve the overall health outcomes. FUNDING Bill & Melinda Gates Foundation. TRANSLATION For the Urdu translation of the abstract see Supplementary Materials section.
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Cousin E, Duncan BB, Stein C, Ong KL, Vos T, Abbafati C, Abbasi-Kangevari M, Abdelmasseh M, Abdoli A, Abd-Rabu R, Abolhassani H, Abu-Gharbieh E, Accrombessi MMK, Adnani QES, Afzal MS, Agarwal G, Agrawaal KK, Agudelo-Botero M, Ahinkorah BO, Ahmad S, Ahmad T, Ahmadi K, Ahmadi S, Ahmadi A, Ahmed A, Ahmed Salih Y, Akande-Sholabi W, Akram T, Al Hamad H, Al-Aly Z, Alcalde-Rabanal JE, Alipour V, Aljunid SM, Al-Raddadi RM, Alvis-Guzman N, Amini S, Ancuceanu R, Andrei T, Andrei CL, Anjana RM, Ansar A, Antonazzo IC, Antony B, Anyasodor AE, Arabloo J, Arizmendi D, Armocida B, Artamonov AA, Arulappan J, Aryan Z, Asgari S, Ashraf T, Astell-Burt T, Atorkey P, Atout MMW, Ayanore MA, Badiye AD, Baig AA, Bairwa M, Baker JL, Baltatu OC, Banik PC, Barnett A, Barone MTU, Barone-Adesi F, Barrow A, Bedi N, Belete R, Belgaumi UI, Bell AW, Bennett DA, Bensenor IM, Beran D, Bhagavathula AS, Bhaskar S, Bhattacharyya K, Bhojaraja VS, Bijani A, Bikbov B, Birara S, Bodolica V, Bonny A, Brenner H, Briko NI, Butt ZA, Caetano dos Santos FL, Cámera LA, Campos-Nonato IR, Cao Y, Cao C, Cerin E, Chakraborty PA, Chandan JS, Chattu VK, Chen S, Choi JYJ, Choudhari SG, Chowdhury EK, Chu DT, Corso B, et alCousin E, Duncan BB, Stein C, Ong KL, Vos T, Abbafati C, Abbasi-Kangevari M, Abdelmasseh M, Abdoli A, Abd-Rabu R, Abolhassani H, Abu-Gharbieh E, Accrombessi MMK, Adnani QES, Afzal MS, Agarwal G, Agrawaal KK, Agudelo-Botero M, Ahinkorah BO, Ahmad S, Ahmad T, Ahmadi K, Ahmadi S, Ahmadi A, Ahmed A, Ahmed Salih Y, Akande-Sholabi W, Akram T, Al Hamad H, Al-Aly Z, Alcalde-Rabanal JE, Alipour V, Aljunid SM, Al-Raddadi RM, Alvis-Guzman N, Amini S, Ancuceanu R, Andrei T, Andrei CL, Anjana RM, Ansar A, Antonazzo IC, Antony B, Anyasodor AE, Arabloo J, Arizmendi D, Armocida B, Artamonov AA, Arulappan J, Aryan Z, Asgari S, Ashraf T, Astell-Burt T, Atorkey P, Atout MMW, Ayanore MA, Badiye AD, Baig AA, Bairwa M, Baker JL, Baltatu OC, Banik PC, Barnett A, Barone MTU, Barone-Adesi F, Barrow A, Bedi N, Belete R, Belgaumi UI, Bell AW, Bennett DA, Bensenor IM, Beran D, Bhagavathula AS, Bhaskar S, Bhattacharyya K, Bhojaraja VS, Bijani A, Bikbov B, Birara S, Bodolica V, Bonny A, Brenner H, Briko NI, Butt ZA, Caetano dos Santos FL, Cámera LA, Campos-Nonato IR, Cao Y, Cao C, Cerin E, Chakraborty PA, Chandan JS, Chattu VK, Chen S, Choi JYJ, Choudhari SG, Chowdhury EK, Chu DT, Corso B, Dadras O, Dai X, Damasceno AAM, Dandona L, Dandona R, Dávila-Cervantes CA, De Neve JW, Denova-Gutiérrez E, Dhamnetiya D, Diaz D, Ebtehaj S, Edinur HA, Eftekharzadeh S, El Sayed I, Elgendy IY, Elhadi M, Elmonem MA, Faisaluddin M, Farooque U, Feng X, Fernandes E, Fischer F, Flood D, Freitas M, Gaal PA, Gad MM, Gaewkhiew P, Getacher L, Ghafourifard M, Ghanei Gheshlagh R, Ghashghaee A, Ghith N, Ghozali G, Gill PS, Ginawi IA, Glushkova EV, Golechha M, Gopalani SV, Guimarães RA, Gupta RD, Gupta R, Gupta VK, Gupta VB, Gupta S, Habtewold TD, Hafezi-Nejad N, Halwani R, Hanif A, Hankey GJ, Haque S, Hasaballah AI, Hasan SS, Hashi A, Hassanipour S, Hay SI, Hayat K, Heidari M, Hossain MBH, Hossain S, Hosseini M, Hoveidamanesh S, Huang J, Humayun A, Hussain R, Hwang BF, Ibitoye SE, Ikuta KS, Inbaraj LR, Iqbal U, Islam MS, Islam SMS, Islam RM, Ismail NE, Isola G, Itumalla R, Iwagami M, Iyamu IO, Jahani MA, Jakovljevic M, Jayawardena R, Jha RP, John O, Jonas JB, Joo T, Kabir A, Kalhor R, Kamath A, Kanchan T, Kandel H, Kapoor N, Kayode GA, Kebede SA, Keshavarz P, Keykhaei M, Khader YS, Khajuria H, Khan MAB, Khan MN, Khan M, Khater AM, Khoja TAM, Khubchandani J, Kim MS, Kim YJ, Kimokoti RW, Kisa S, Kisa A, Kivimäki M, Korshunov VA, Korzh O, Koyanagi A, Krishan K, Kuate Defo B, Kumar GA, Kumar N, Kusuma D, La Vecchia C, Lacey B, Larsson AO, Lasrado S, Lee WC, Lee CB, Lee PH, Lee SWH, Li MC, Lim SS, Lim LL, Lucchetti G, Majeed A, Malik AA, Mansouri B, Mantovani LG, Martini S, Mathur P, McAlinden C, Mehedi N, Mekonnen T, Menezes RG, Mersha AG, Miao Jonasson J, Miazgowski T, Michalek IM, Mirica A, Mirrakhimov EM, Mirza AZ, Mithra P, Mohammadian-Hafshejani A, Mohammadpourhodki R, Mohammed A, Mokdad AH, Molokhia M, Monasta L, Moni MA, Moradpour F, Moradzadeh R, Mostafavi E, Mueller UO, Murray CJL, Mustafa A, Nagel G, Nangia V, Naqvi AA, Nayak BP, Nazari J, Ndejjo R, Negoi RI, Neupane Kandel S, Nguyen CT, Nguyen HLT, Noubiap JJ, Nowak C, Oancea B, Odukoya OO, Oguntade AS, Ojo TT, Olagunju AT, Onwujekwe OE, Ortiz A, Owolabi MO, Palladino R, Panda-Jonas S, Pandi-Perumal SR, Pardhan S, Parekh T, Parvizi M, Pepito VCF, Perianayagam A, Petcu IR, Pilania M, Podder V, Polibin RV, Postma MJ, Prashant A, Rabiee N, Rabiee M, Rahimi-Movaghar V, Rahman MA, Rahman MM, Rahman M, Rahmawaty S, Rajai N, Ram P, Rana J, Ranabhat K, Ranasinghe P, Rao CR, Rao S, Rawaf S, Rawaf DL, Rawal L, Renzaho AMN, Rezaei N, Rezapour A, Riahi SM, Ribeiro D, Rodriguez JAB, Roever L, Rohloff P, Rwegerera GM, Ryan PM, Saber-Ayad MM, Sabour S, Saddik B, Saeedi Moghaddam S, Sahebkar A, Sahoo H, Saif-Ur-Rahman KM, Salimzadeh H, Samaei M, Sanabria J, Santric-Milicevic MM, Sathian B, Sathish T, Schlaich MP, Seidu AA, Šekerija M, Senthil Kumar N, Seylani A, Shaikh MA, Shamshad H, Shawon MSR, Sheikhbahaei S, Shetty JK, Shiri R, Shivakumar KM, Shuval K, Singh JA, Singh A, Skryabin VY, Skryabina AA, Sofi-Mahmudi A, Soheili A, Sun J, Szerencsés V, Szócska M, Tabarés-Seisdedos R, Tadbiri H, Tadesse EG, Tariqujjaman M, Thankappan KR, Thapar R, Thomas N, Timalsina B, Tobe-Gai R, Tonelli M, Tovani-Palone MR, Tran BX, Tripathy JP, Tudor Car L, Tusa BS, Uddin R, Upadhyay E, Valadan Tahbaz S, Valdez PR, Vasankari TJ, Verma M, Villalobos-Daniel VE, Vladimirov SK, Vo B, Vu GT, Vukovic R, Waheed Y, Wamai RG, Werdecker A, Wickramasinghe ND, Winkler AS, Wubishet BL, Xu X, Xu S, Yahyazadeh Jabbari SH, Yatsuya H, Yaya S, Yazie TSY, Yi S, Yonemoto N, Yunusa I, Zadey S, Zaman SB, Zamanian M, Zamora N, Zastrozhin MS, Zastrozhina A, Zhang ZJ, Zhong C, Zmaili M, Zumla A, Naghavi M, Schmidt MI. Diabetes mortality and trends before 25 years of age: an analysis of the Global Burden of Disease Study 2019. Lancet Diabetes Endocrinol 2022; 10:177-192. [PMID: 35143780 PMCID: PMC8860753 DOI: 10.1016/s2213-8587(21)00349-1] [Show More Authors] [Citation(s) in RCA: 73] [Impact Index Per Article: 24.3] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 05/21/2021] [Revised: 10/27/2021] [Accepted: 12/10/2021] [Indexed: 02/07/2023] [Imported: 04/16/2025]
Abstract
BACKGROUND Diabetes, particularly type 1 diabetes, at younger ages can be a largely preventable cause of death with the correct health care and services. We aimed to evaluate diabetes mortality and trends at ages younger than 25 years globally using data from the Global Burden of Diseases, Injuries, and Risk Factors Study (GBD) 2019. METHODS We used estimates of GBD 2019 to calculate international diabetes mortality at ages younger than 25 years in 1990 and 2019. Data sources for causes of death were obtained from vital registration systems, verbal autopsies, and other surveillance systems for 1990-2019. We estimated death rates for each location using the GBD Cause of Death Ensemble model. We analysed the association of age-standardised death rates per 100 000 population with the Socio-demographic Index (SDI) and a measure of universal health coverage (UHC) and described the variability within SDI quintiles. We present estimates with their 95% uncertainty intervals. FINDINGS In 2019, 16 300 (95% uncertainty interval 14 200 to 18 900) global deaths due to diabetes (type 1 and 2 combined) occurred in people younger than 25 years and 73·7% (68·3 to 77·4) were classified as due to type 1 diabetes. The age-standardised death rate was 0·50 (0·44 to 0·58) per 100 000 population, and 15 900 (97·5%) of these deaths occurred in low to high-middle SDI countries. The rate was 0·13 (0·12 to 0·14) per 100 000 population in the high SDI quintile, 0·60 (0·51 to 0·70) per 100 000 population in the low-middle SDI quintile, and 0·71 (0·60 to 0·86) per 100 000 population in the low SDI quintile. Within SDI quintiles, we observed large variability in rates across countries, in part explained by the extent of UHC (r2=0·62). From 1990 to 2019, age-standardised death rates decreased globally by 17·0% (-28·4 to -2·9) for all diabetes, and by 21·0% (-33·0 to -5·9) when considering only type 1 diabetes. However, the low SDI quintile had the lowest decline for both all diabetes (-13·6% [-28·4 to 3·4]) and for type 1 diabetes (-13·6% [-29·3 to 8·9]). INTERPRETATION Decreasing diabetes mortality at ages younger than 25 years remains an important challenge, especially in low and low-middle SDI countries. Inadequate diagnosis and treatment of diabetes is likely to be major contributor to these early deaths, highlighting the urgent need to provide better access to insulin and basic diabetes education and care. This mortality metric, derived from readily available and frequently updated GBD data, can help to monitor preventable diabetes-related deaths over time globally, aligned with the UN's Sustainable Development Targets, and serve as an indicator of the adequacy of basic diabetes care for type 1 and type 2 diabetes across nations. FUNDING Bill & Melinda Gates Foundation.
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Afzal MS, Khan A, Qureshi UUR, Saleem S, Saqib MAN, Shabbir RMK, Naveed M, Jabbar M, Zahoor S, Ahmed H. Community-Based Assessment of Knowledge, Attitude, Practices and Risk Factors Regarding COVID-19 Among Pakistanis Residents During a Recent Outbreak: A Cross-Sectional Survey. J Community Health 2021; 46:476-486. [PMID: 32661860 PMCID: PMC7356130 DOI: 10.1007/s10900-020-00875-z] [Citation(s) in RCA: 51] [Impact Index Per Article: 12.8] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/17/2022] [Imported: 04/16/2025]
Abstract
Exceptional precautionary measures have been adopted to stop the transmission and control of COVID-19 through the world and Pakistan is facing lockdown in this scenario. Public loyalty to precautionary measures is affected by their knowledge, attitude, risk factors and practices (KAP) towards COVID-19. The present study was conducted among the Pakistani residents to observe the knowledge, attitude, practices and risk factors towards COVID-19 outbreak in Pakistan. A questionnaire was designed, and a cross-sectional survey was conducted among participants of the study area. Participants were asked the questions regarding knowledge, attitude, practices and risk factors towards COVID-19. Data were analyzed by SPSS and t/F test and correlation was applied among the knowledge, attitude, risk factors and practices. A total of 1060 questionnaires were received. 1004 were included while 56 were excluded. The highest representation was from Punjab province (65.6%), female (63%) and age group of 21-30 years (62.1%). Most participants were single (85%), Muslim (99.4%), Urdu speaking (45.6%) and were graduates (51.5%). Most of the participants were students (52.9%) and were from economically middle-class families (40.8%). The knowledge was positively correlated with attitude and practices whereas negatively correlated with risk factors (P < 0.05). The attitude was negatively correlated with risk factor and positively correlated with practices. The risk factors and practices were positively correlated with each other. Health education program to improve the COVID-19 knowledge, attitude, practices and risk factors should be initiated to combat current health challenge.
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Peden AE, Cullen P, Francis KL, Moeller H, Peden MM, Ye P, Tian M, Zou Z, Sawyer SM, Aali A, Abbasi-Kangevari Z, Abbasi-Kangevari M, Abdelmasseh M, Abdoun M, Abd-Rabu R, Abdulah DM, Abebe G, Abebe AM, Abedi A, Abidi H, Aboagye RG, Abubaker Ali H, Abu-Gharbieh E, Adane DE, Adane TD, Addo IY, Adewole OG, Adhikari S, Adnan M, Adnani QES, Afolabi AAB, Afzal S, Afzal MS, Aghdam ZB, Ahinkorah BO, Ahmad AR, Ahmad T, Ahmad S, Ahmadi A, Ahmed H, Ahmed MB, Ahmed A, Ahmed A, Ahmed JQ, Ahmed Rashid T, Aithala JP, Aji B, Akhlaghdoust M, Alahdab F, Alanezi FM, Alemayehu A, Al Hamad H, Ali SS, Ali L, Alimohamadi Y, Alipour V, Aljunid SM, Almidani L, Almustanyir S, Altirkawi KA, Alvis-Zakzuk NJ, Ameyaw EK, Amin TT, Amir-Behghadami M, Amiri S, Amiri H, Anagaw TF, Andrei T, Andrei CL, Anvari D, Anwar SL, Anyasodor AE, Arabloo J, Arab-Zozani M, Arja A, Arulappan J, Arumugam A, Aryannejad A, Asgary S, Ashraf T, Athari SS, Atreya A, Attia S, Aujayeb A, Awedew AF, Azadnajafabad S, Azangou-Khyavy M, Azari S, Azari Jafari A, Azizi H, Azzam AY, Badiye AD, Baghcheghi N, Bagherieh S, Baig AA, Bakkannavar SM, Balta AB, Banach M, Banik PC, Bansal H, et alPeden AE, Cullen P, Francis KL, Moeller H, Peden MM, Ye P, Tian M, Zou Z, Sawyer SM, Aali A, Abbasi-Kangevari Z, Abbasi-Kangevari M, Abdelmasseh M, Abdoun M, Abd-Rabu R, Abdulah DM, Abebe G, Abebe AM, Abedi A, Abidi H, Aboagye RG, Abubaker Ali H, Abu-Gharbieh E, Adane DE, Adane TD, Addo IY, Adewole OG, Adhikari S, Adnan M, Adnani QES, Afolabi AAB, Afzal S, Afzal MS, Aghdam ZB, Ahinkorah BO, Ahmad AR, Ahmad T, Ahmad S, Ahmadi A, Ahmed H, Ahmed MB, Ahmed A, Ahmed A, Ahmed JQ, Ahmed Rashid T, Aithala JP, Aji B, Akhlaghdoust M, Alahdab F, Alanezi FM, Alemayehu A, Al Hamad H, Ali SS, Ali L, Alimohamadi Y, Alipour V, Aljunid SM, Almidani L, Almustanyir S, Altirkawi KA, Alvis-Zakzuk NJ, Ameyaw EK, Amin TT, Amir-Behghadami M, Amiri S, Amiri H, Anagaw TF, Andrei T, Andrei CL, Anvari D, Anwar SL, Anyasodor AE, Arabloo J, Arab-Zozani M, Arja A, Arulappan J, Arumugam A, Aryannejad A, Asgary S, Ashraf T, Athari SS, Atreya A, Attia S, Aujayeb A, Awedew AF, Azadnajafabad S, Azangou-Khyavy M, Azari S, Azari Jafari A, Azizi H, Azzam AY, Badiye AD, Baghcheghi N, Bagherieh S, Baig AA, Bakkannavar SM, Balta AB, Banach M, Banik PC, Bansal H, Bardhan M, Barone-Adesi F, Barrow A, Bashiri A, Baskaran P, Basu S, Bayileyegn NS, Bekel AA, Bekele AB, Bendak S, Bensenor IM, Berhie AY, Bhagat DS, Bhagavathula AS, Bhardwaj P, Bhardwaj N, Bhaskar S, Bhat AN, Bhattacharyya K, Bhutta ZA, Bibi S, Bintoro BS, Bitaraf S, Bodicha BBA, Boloor A, Bouaoud S, Brown J, Burkart K, Butt NS, Butt MH, Cámera LA, Campuzano Rincon JC, Cao C, Carvalho AF, Carvalho M, Chakraborty PA, Chandrasekar EK, Chang JC, Charalampous P, Charan J, Chattu VK, Chekole BM, Chitheer A, Cho DY, Chopra H, Christopher DJ, Chukwu IS, Cruz-Martins N, Dadras O, Dahlawi SMA, Dai X, Damiani G, Darmstadt GL, Darvishi Cheshmeh Soltani R, Darwesh AM, Das S, Dastiridou A, Debela SA, Dehghan A, Demeke 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Kim J, Kim YJ, Kisa S, Kisa A, Kneib CJ, Kompani F, Koohestani HR, Koul PA, Koulmane Laxminarayana SL, Koyanagi A, Krishan K, Krishnamoorthy V, Kucuk Bicer B, Kumar N, Kumar N, Kumar N, Kumar M, Kurmi OP, Laflamme L, Lám J, Landires I, Larijani B, Lasrado S, Lauriola P, La Vecchia C, Lee SWH, Lee YH, Lee SW, Lee WC, Legesse SM, Li S, Lim SS, Lorenzovici L, Luke AO, Madadizadeh F, Madureira-Carvalho ÁM, Magdy Abd El Razek M, Mahjoub S, Mahmoodpoor A, Mahmoudi R, Mahmoudimanesh M, Majeed A, Makki A, Malakan Rad E, Malekpour MR, Malik AA, Mallhi TH, Malta DC, Mansouri B, Mansournia MA, Mathews E, Maulud SQ, Mazingi D, Mehrabi Nasab E, Mendoza-Cano O, Menezes RG, Mengistu DA, Mentis AFA, Meretoja A, Mesregah MK, Mestrovic T, Micheletti Gomide Nogueira de Sá AC, Miller TR, Mirghaderi SP, Mirica A, Mirmoeeni S, Mirrakhimov EM, Mirza M, Misra S, Mithra P, Mittal C, Moberg ME, Mohammadi M, Mohammadi S, Mohammadi E, Mohammadpourhodki R, Mohammed S, Mohammed TA, Mohseni M, Mokdad AH, Momtazmanesh S, Monasta L, Moni MA, Moreira RS, Morrison SD, Mostafavi E, Mousavi Isfahani H, Mubarik S, Muccioli L, Mukherjee S, Mulita F, Mustafa G, Nagarajan AJ, Naimzada MD, Nangia V, Nassereldine H, Natto ZS, Nayak BP, Negoi I, Nejadghaderi SA, Nepal S, Neupane Kandel S, Noroozi N, Nuñez-Samudio V, Nzoputam OJ, Nzoputam CI, Ochir C, Odhiambo JN, Odukoya OO, Okati-Aliabad H, Okonji OC, Olagunju AT, Omar Bali A, Omer E, Otoiu A, Otstavnov SS, Otstavnov N, Oumer B, Owolabi MO, P A M, Padron-Monedero A, Padubidri JR, Pahlevan Fallahy MT, Palicz T, Panda-Jonas S, Pandi-Perumal SR, Pardhan S, Park EK, Patel SK, Pathan AR, Pati S, Paudel U, Pawar S, Pedersini P, Peres MFP, Petcu IR, Phillips MR, Pillay JD, Piracha ZZ, Poursadeqiyan M, Pourtaheri N, Qattea I, Radfar A, Rafiee A, Raghav PR, Rahim F, Rahman MA, Rahman FS, Rahman M, Rahmani AM, Rahmani S, Raj Moolambally S, Ramazanu S, Ramezanzadeh K, Rana J, Rao CR, Rao SJ, Rashedi V, Rashidi MM, Rastogi P, Rasul A, Rawaf S, Rawaf DL, Rawal L, Rawassizadeh R, Rezaei N, Rezaei N, Rezaeian M, Rezapour A, Riad A, Riaz M, Rickard J, Rodriguez JAB, Roever L, Ronfani L, Roy B, S M, Saad AMA, Sabour S, Sabzmakan L, Saddik B, Sadeghi M, Saeb MR, Saeed U, Saeedi Moghaddam S, Safi SZ, Sahiledengle B, Sahoo H, Sahraian MA, Saki M, Salamati P, Salehi S, Salem MR, Samy AM, Sanabria J, Santric-Milicevic MM, Saqib MAN, Sarikhani Y, Sarveazad A, Sathian B, Satpathy M, Saya GK, Schneider IJC, Schwebel DC, Seddighi H, Senthilkumaran S, Seylani A, Shabaninejad H, Shafeghat M, Shah PA, Shahabi S, Shahbandi A, Shahraki-Sanavi F, Shaikh MA, Shaker E, Shams-Beyranvand M, Shanawaz M, Shannawaz M, Sharew MMS, Sharma N, Shashamo BB, Shayan M, Sheikhi RA, Shen J, Shetty BSK, Shetty PH, Shin JI, Shitaye NA, Shivakumar KM, Shobeiri P, Shorofi SA, Shrestha S, Siabani S, Sidemo NB, Simegn W, Sinaei E, Singh P, Sinto R, Siraj MS, Skryabin VY, Skryabina AA, Sleet DA, S N C, Socea B, Solmi M, Solomon Y, Song Y, Sousa RARC, Soyiri IN, Stokes MA, Suleman M, Suliankatchi Abdulkader R, Sun J, Szócska M, Tabarés-Seisdedos R, Tabatabaei SM, Tabish M, Taheri E, Taheri Soodejani M, Tampa M, Tan KK, Tarigan IU, Tariqujjaman M, Tat NY, Tat VY, Tavakoli A, Tefera BN, Tefera YM, Temesgen G, Temsah MH, Thangaraju P, Thapar R, Thomas NK, Ticoalu JHV, Tincho MB, Tiyuri A, Togtmol M, Tovani-Palone MR, Tran MTN, Ullah S, Ullah S, Ullah I, Umakanthan S, Unnikrishnan B, Upadhyay E, Valadan Tahbaz S, Valdez PR, Vasankari TJ, Vaziri S, Veroux M, Vervoort D, Violante FS, Vlassov V, Vu LG, Waheed Y, Wang Y, Wang YP, Wang C, Wiangkham T, Wickramasinghe ND, Woday AT, Wu AM, Yahya GAT, Yahyazadeh Jabbari SH, Yang L, Yaya S, Yigit A, Yiğit V, Yisihak E, Yonemoto N, You Y, Younis MZ, Yu C, Yunusa I, Yusefi H, Zahir M, Zaman SB, Zare I, Zarea K, Zastrozhin MS, Zhang ZJ, Zhang Y, Ziapour A, Zodpey S, Zoladl M, Patton GC, Ivers RQ. Adolescent transport and unintentional injuries: a systematic analysis using the Global Burden of Disease Study 2019. Lancet Public Health 2022; 7:e657-e669. [PMID: 35779567 PMCID: PMC9329128 DOI: 10.1016/s2468-2667(22)00134-7] [Show More Authors] [Citation(s) in RCA: 41] [Impact Index Per Article: 13.7] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/29/2022] [Revised: 05/24/2022] [Accepted: 05/25/2022] [Indexed: 01/22/2023] [Imported: 04/16/2025]
Abstract
BACKGROUND Globally, transport and unintentional injuries persist as leading preventable causes of mortality and morbidity for adolescents. We sought to report comprehensive trends in injury-related mortality and morbidity for adolescents aged 10-24 years during the past three decades. METHODS Using the Global Burden of Disease, Injuries, and Risk Factors 2019 Study, we analysed mortality and disability-adjusted life-years (DALYs) attributed to transport and unintentional injuries for adolescents in 204 countries. Burden is reported in absolute numbers and age-standardised rates per 100 000 population by sex, age group (10-14, 15-19, and 20-24 years), and sociodemographic index (SDI) with 95% uncertainty intervals (UIs). We report percentage changes in deaths and DALYs between 1990 and 2019. FINDINGS In 2019, 369 061 deaths (of which 214 337 [58%] were transport related) and 31·1 million DALYs (of which 16·2 million [52%] were transport related) among adolescents aged 10-24 years were caused by transport and unintentional injuries combined. If compared with other causes, transport and unintentional injuries combined accounted for 25% of deaths and 14% of DALYs in 2019, and showed little improvement from 1990 when such injuries accounted for 26% of adolescent deaths and 17% of adolescent DALYs. Throughout adolescence, transport and unintentional injury fatality rates increased by age group. The unintentional injury burden was higher among males than females for all injury types, except for injuries related to fire, heat, and hot substances, or to adverse effects of medical treatment. From 1990 to 2019, global mortality rates declined by 34·4% (from 17·5 to 11·5 per 100 000) for transport injuries, and by 47·7% (from 15·9 to 8·3 per 100 000) for unintentional injuries. However, in low-SDI nations the absolute number of deaths increased (by 80·5% to 42 774 for transport injuries and by 39·4% to 31 961 for unintentional injuries). In the high-SDI quintile in 2010-19, the rate per 100 000 of transport injury DALYs was reduced by 16·7%, from 838 in 2010 to 699 in 2019. This was a substantially slower pace of reduction compared with the 48·5% reduction between 1990 and 2010, from 1626 per 100 000 in 1990 to 838 per 100 000 in 2010. Between 2010 and 2019, the rate of unintentional injury DALYs per 100 000 also remained largely unchanged in high-SDI countries (555 in 2010 vs 554 in 2019; 0·2% reduction). The number and rate of adolescent deaths and DALYs owing to environmental heat and cold exposure increased for the high-SDI quintile during 2010-19. INTERPRETATION As other causes of mortality are addressed, inadequate progress in reducing transport and unintentional injury mortality as a proportion of adolescent deaths becomes apparent. The relative shift in the burden of injury from high-SDI countries to low and low-middle-SDI countries necessitates focused action, including global donor, government, and industry investment in injury prevention. The persisting burden of DALYs related to transport and unintentional injuries indicates a need to prioritise innovative measures for the primary prevention of adolescent injury. FUNDING Bill & Melinda Gates Foundation.
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Kabir M, Afzal MS, Khan A, Ahmed H. COVID-19 pandemic and economic cost; impact on forcibly displaced people. Travel Med Infect Dis 2020; 35:101661. [PMID: 32272198 PMCID: PMC7136875 DOI: 10.1016/j.tmaid.2020.101661] [Citation(s) in RCA: 40] [Impact Index Per Article: 8.0] [Reference Citation Analysis] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/28/2020] [Accepted: 04/02/2020] [Indexed: 11/26/2022] [Imported: 08/29/2023]
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Khan A, Naz K, Ahmed H, Simsek S, Afzal MS, Haider W, Ahmad SS, Farrakh S, Weiping W, Yayi G. Knowledge, attitudes and practices related to cystic echinococcosis endemicity in Pakistan. Infect Dis Poverty 2018; 7:4. [PMID: 29353554 PMCID: PMC5776779 DOI: 10.1186/s40249-017-0383-2] [Citation(s) in RCA: 35] [Impact Index Per Article: 5.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/28/2017] [Accepted: 12/20/2017] [Indexed: 11/10/2022] [Imported: 04/16/2025] Open
Abstract
BACKGROUND Cystic echinococcosis (CE) is a human and animal health problem in many endemic areas worldwide. It is considered a neglected zoonotic disease caused by the larval form (hydatid cyst) of Echinococcus spp. tapeworm. There are limited studies on echinococcosis in Pakistan. METHODS A cross-sectional survey was conducted to find out recent knowledge, attitudes and practices on the occurrence of cystic echinococcosis in butchers and dog owners in both urban and rural areas of Rawalpindi/Islamabad regions, Pakistan. The quantitative data was collected in the form of questionnaires to investigate the knowledge and awareness of CE among community members and their routine practices that were behind the factors involved in hydatid cyst infection. The practices and infrastructure of abattoirs/butcher shops and their role in transmission of cystic echinococcosis were also evaluated in the present study. RESULTS The participants involved in the study were dog owners and people who kept animals. A total of 400 people were interviewed and 289 questionnaires were received. The results showed that only 4.1% of people have heard about the disease, and 58.1% were closely associated with dogs. Sixty-three percent of dogs in study area were consuming uncooked organs (e.g. liver, lung, etc.) of slaughtered animals, while 100% of dogs at butcher shops were consuming uncooked organs. Home slaughtering was common in 20.06%. Among butchers, 32.3% had heard about zoonoses and 7.61% knew about CE. The statistical analysis showed that there was highly significant difference (P < 0.05) among most of the practices that were associated with the prevalence of CE. CONCLUSIONS It was concluded from the present study that, the knowledge and awareness of CE among people of Rawalpindi/Islamabad were low. Because of dogs and poor knowledge of CE among community members and butchers, the transmission of echinococcosis is facilitated. Therefore, there is urgent need to strengthen awareness and health education among people, as well as proper practices related to the CE not only in the study area, but also in other areas of Pakistan.
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Afzal MS, Tahir S, Salman A, Baig TA, Shafi T, Zaidi NUSS, Qadri I. Analysis of interleukin-10 gene polymorphisms and hepatitis C susceptibility in Pakistan. J Infect Dev Ctries 2011; 5:473-479. [PMID: 21727647 DOI: 10.3855/jidc.1338] [Citation(s) in RCA: 33] [Impact Index Per Article: 2.4] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/28/2010] [Revised: 10/19/2010] [Accepted: 01/19/2011] [Indexed: 12/17/2022] [Imported: 08/29/2023] Open
Abstract
INTRODUCTION Hepatitis C virus (HCV) commonly causes a chronic infection but few of patients are able to clear the virus naturally. Interleukin-10 (IL-10) is an anti-inflammatory cytokine that can suppress the immune response against HCV. Interindividual variations in IL-10 production are genetically contributed by polymorphisms within the IL-10 promoter region. This study aimed to investigate the association of the IL-10 gene promoter -1082 G/A, -819 C/T, and -592 C/A polymorphisms with HCV infection susceptibility in Pakistani individuals. METHODOLOGY Eighty-nine chronically infected patients and 99 controls were enrolled in the study. IL-10 (-1,082 G/A, -819 C/T, -592 C/A) genotyping was performed by amplification refractory mutation system-polymerase chain reaction (ARMS-PCR). RESULTS A suggestive evidence of association with hepatitis C was obtained for the IL-10 -819 C/T (-592 C/A) (p: 0.03) promoter polymorphism at the allele level but not in genotype distribution. The IL-10 -1082 allele showed no association while positive association of GG (p: 0.001) gene and negative association for GA (0.001) gene were observed. Higher frequencies were observed for GTA (p: 0.02), ACC (p: 0.01) haplotype and GCC/GTA (p: 0.005) diplotype in HCV patients than controls while diplotype GCC/ATA showed protective effect against HCV. CONCLUSIONS Our findings suggest that different IL-10 gene polymorphisms may lead to an imbalance between the pro-inflammatory and anti-inflammatory cytokine responses which may in turn influence the susceptibility to HCV infection.
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Haqqi A, Awan UA, Ali M, Saqib MAN, Ahmed H, Afzal MS. COVID-19 and dengue virus coepidemics in Pakistan: A dangerous combination for an overburdened healthcare system. J Med Virol 2021; 93:80-82. [PMID: 32510175 PMCID: PMC7300443 DOI: 10.1002/jmv.26144] [Citation(s) in RCA: 33] [Impact Index Per Article: 8.3] [Reference Citation Analysis] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/27/2020] [Revised: 06/02/2020] [Accepted: 06/03/2020] [Indexed: 12/23/2022] [Imported: 08/29/2023]
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Ahmed H, Ali S, Afzal MS, Khan AA, Raza H, Shah ZH, Simsek S. Why more research needs to be done on echinococcosis in Pakistan. Infect Dis Poverty 2017; 6:90. [PMID: 28669350 PMCID: PMC5494903 DOI: 10.1186/s40249-017-0309-z] [Citation(s) in RCA: 33] [Impact Index Per Article: 4.1] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/17/2016] [Accepted: 04/20/2017] [Indexed: 11/24/2022] [Imported: 04/16/2025] Open
Abstract
BACKGROUND Echinococcosis has a worldwide geographical distribution with endemic foci on every inhabited continent. Due to the frequent outbreaks in different parts of Pakistan in the recent past, echinococcosis is being described as a neglected tropical disease and is considered one of the most neglected parasitic diseases in the country. In endemic regions, predominantly settings with limited resources, there are high numbers of echinococcosis patients, as these communities do not have access to appropriate treatment. In Pakistan, there are limited reports on echinococcosis. The disease is prevalent in human and livestock, but this has not been sufficiently explored yet. Pakistan is an agricultural country and due to the disease's zoonotic mode of transmission, there is a dire need of future research on it. The present paper is an effort to highlight the importance of echinococcosis in Pakistan. DISCUSSION There is a dire need for future research on echinococcosis in Pakistan as very few investigations had been carried out on this topic thus far. The prevalence of the disease in neighbouring countries highlights that Pakistan might be at severe risk of this zoonotic infection and further supports the need for more research. In Pakistan, the majority of the population lives in rural areas with limited acess to proper hygienic/sanitary facilities. These conditions favour the outbreak of diseases such as echinococcosis. The limited available data could result in higher outbreaks in the future, and thus cause the already weak healthcare system to overburden. The country has a meagre annual budget for health, which is being spent on known infections such as polio, dengue fever and hepatic viral infections. A proper surveillance system for echinococcosis is required across the country as treatment is usually expensive, complicated and may require extensive surgery and/or prolonged drug therapy. Development of new/novel drugs and other treatment modalities receives very little, if any, attention. Prognostic awareness programmes against this infection involve deworming of the infected animals, improved food inspection and slaughterhouse hygiene, and public education campaigns. CONCLUSION Future research on echinococcosis is anticipated to demonstrate whether the epidemiology, diagnosis and recombinant vaccines/antibodies relating to echinococcosis can meet the quality standards (purity, potency, safety and efficacy) defined by the World Health Organization. Research work should be carried out on the epidemiology and serodiagnosis of echinocossis in the different areas of Pakistan, which will be useful for the proper eradication of echinococcosis in this region. The health department should implement awareness-raising campaigns for the general public in order to reduce the burden of disease.
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