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Garland JM, Mayan H, Kantor R. Treatment of Advanced HIV in the Modern Era. Drugs 2025:10.1007/s40265-025-02181-1. [PMID: 40354016 DOI: 10.1007/s40265-025-02181-1] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Accepted: 03/26/2025] [Indexed: 05/14/2025]
Abstract
Antiretroviral therapy has transformed human immunodeficiency virus (HIV) infection from a fatal illness into a manageable chronic condition. However, despite remarkable progress, the HIV epidemic remains a global health challenge, with ambitious targets such as 95-95-95 by 2030 at risk of being unmet. While antiretroviral therapy availability has expanded worldwide, gaps persist, including unawareness of HIV status, inconsistent medication uptake, and limited engagement in care across diverse settings. Advanced HIV represents a particularly challenging yet underexplored aspect of HIV care. Its definition is complex, complicating efforts to address the needs of this vulnerable population. This review characterizes advanced HIV populations, defines them by spectra of immune suppression, antiretroviral therapy exposure, and drug resistance, and explores contemporary approaches to their management, with a particular focus on drug resistance and its clinical implications in modern HIV care. It highlights the unique challenges faced by individuals presenting late to care, those with limited care engagement, and aging populations with long-term exposure to HIV and antiretroviral therapy. By defining these populations, refining our understanding of advanced HIV, and addressing the diverse needs of affected individuals, providers can enhance outcomes and develop strategies to overcome barriers to care. Bridging these critical gaps is essential to advancing global efforts to end the HIV epidemic, both in the USA and worldwide.
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Affiliation(s)
- Joseph M Garland
- The Miriam Hospital, Providence, RI, USA
- Brown University, Providence, RI, USA
| | - Haim Mayan
- Sheba Medical Center, Tel Aviv, Israel
- Tel Aviv University, Tel Aviv, Israel
| | - Rami Kantor
- The Miriam Hospital, Providence, RI, USA.
- Brown University, Providence, RI, USA.
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Tukei VJ, Machekano R, Tchounga BK, Khumalo PN, Tumwebaze R, Murandu M, Viana S, Masaba RO, Mokone-Mwape M, Chirwa L, Mashizwa S, Rakhmanina N, Tiam A. Follow-Up Outcomes of Children, Adolescents, and Young People on Darunavir-Based Third-Line Antiretroviral Therapy: Observational Cohort From 9 African Countries. J Acquir Immune Defic Syndr 2024; 97:305-312. [PMID: 39085992 PMCID: PMC11458085 DOI: 10.1097/qai.0000000000003498] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/05/2024] [Accepted: 06/10/2024] [Indexed: 08/02/2024]
Abstract
BACKGROUND We assessed clinical outcomes among children, adolescents, and people younger than 25 years on darunavir-based antiretroviral therapy (ART) in 9 sub-Saharan African countries. SETTING Third-line ART centers in Cameroon, Eswatini, Kenya, Lesotho, Nigeria, Rwanda, Uganda, Zambia, and Zimbabwe. METHODS From January 2019 to December 2022, we collected data from a cohort of children, adolescents, and young people receiving third-line ART from 9 sub-Saharan African countries. Data on treatment continuity, viral suppression, death, and clinic transfers were extracted from medical records and summarized. Cox proportional hazards models were used to identify factors independently associated with retention in care. RESULTS Of 871 participants enrolled, the median age was 14.8 (range: 0.2-24.7) years and 488 (56.0%) were male; 809 (92.9%) [median duration of follow-up of 28.3 months (interquartile range: 17.5-45.2)] had final outcomes after initiating third-line ART. Of these, 711 (87.9%) were alive and in care at the end of study follow-up, 29 (3.6%) died, 30 (3.7%) were transferred to other facilities, and 39 (4.8%) were lost to follow-up. Retention in care was less likely among male patients compared with female patients [aHR: 0.85, 95% confidence interval: 0.72 to 1.0] and in 10-14-year-old children compared with younger children. Adolescents (15-19 years old) had higher mortality compared with children younger than 10 years (aSHR: 4.20, 95% confidence interval: 1.37 to 12.87). Viral suppression was seen in 345/433 (79.7%), 249/320 (77.8%), and 546/674 (81.0%) patients with results at 6 months, 12 months, and study end, respectively. CONCLUSIONS A high proportion of children and young people receiving third-line ART in sub-Saharan Africa remain in care and attain viral suppression during follow-up.
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Affiliation(s)
| | | | | | | | | | | | - Shannon Viana
- Elizabeth Glaser Pediatrics AIDS Foundation, Washington, DC
| | | | | | | | - Simba Mashizwa
- Elizabeth Glaser Pediatrics AIDS Foundation, Harare, Zimbabwe
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Ge L, Luo Y, Li X, Hu Y, Sun L, Bu F, Shan D, Liu J. Global, regional, and national prevalence of HIV-1 drug resistance in treatment-naive and treatment-experienced children and adolescents: a systematic review and meta-analysis. EClinicalMedicine 2024; 77:102859. [PMID: 39430612 PMCID: PMC11490817 DOI: 10.1016/j.eclinm.2024.102859] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 06/13/2024] [Revised: 09/09/2024] [Accepted: 09/12/2024] [Indexed: 10/22/2024] Open
Abstract
Background Despite significant reductions in mother-to-child HIV-1 transmission risks due to the advancements and scale-up of antiretroviral therapy (ART), the global burden of HIV-1 drug resistance (HIVDR) in treatment-naive and treatment-experienced children and adolescents remains poorly understood. In this study, we conducted a systematic review and meta-analysis to estimate the prevalence of HIVDR in these populations globally, regionally, and at the country level. Methods We systematically searched PubMed, Embase, and Web of Science for studies reporting HIVDR in treatment-naive and treatment-experienced children and adolescents from inception to June 28, 2024. Eligible studies reported at least ten successfully genotyped cases. We excluded studies where drug resistance was not reported separately for children and adults or for treatment-naive and treatment-experienced populations. The methodological quality of eligible studies was assessed, and random-effect models were used for meta-analysis to determine the pooled overall and regimen-specific prevalence of one or more HIVDR mutations in these populations globally, regionally, or at the country level. This study is registered with PROSPERO under the number CRD42023424483. Findings Of 2282 records identified, 136 studies (28,539 HIV-1-infected children from 52 countries) were included for analysis. The overall prevalence of HIVDR is 26.31% (95% CI, 20.76-32.25) among treatment-naive children and 74.16% (95% CI, 67.74-80.13) among treatment-experienced children (p < 0.0001). HIVDR varied widely across subregion with the highest prevalence in Southern Africa (37.80% [95% CI, 26.24-50.08]) and lowest in South America (11.79% [95% CI, 4.91-20.84]) for treatment-naive children while highest in Asia (80.85% [95% CI, 63.76-93.55]) and lowest in Europe (54.39% [95% CI, 28.61-79.03]) for treatment-experienced children. The proportion of viral failure (VF) presented positive correlation with DR prevalence for treatment-experienced children, which increased from 61.23% (95% CI, 47.98-73.72) in proportion of VF <50%-81.17% (95% CI, 71.57-89.28) in proportion of 100%. Meta-regression analysis for both groups showed that only age (naive: p = 0.0005; treated: p < 0.0001) was the sources of heterogeneity. Non-nucleoside reverse transcriptase inhibitor (NNRTI) resistances were the most seen mutations among the treatment-naive group, with the HIVDR prevalence more than 10% in Southern Africa, Western and Central Africa, Eastern Africa, Asia, and North America. Both nucleoside reverse transcriptase inhibitor (NRTI) and NNRTI resistances were commonly seen among the treatment-experienced group, varying from 36.33% (95% CI, 11.96-64.93) in North America to 77.54% (95% CI, 62.70-89.58) in South America for NRTI and from 39.98% (95% CI, 13.47-69.97) in Europe to 68.86 (95% CI, 43.91-89.17) in Asia for NNRTI, respectively. Interpretation This study underscores the significant burden of HIVDR among children and adolescents worldwide, particularly pronounced in sub-Saharan Africa and low-income countries. It emphasizes the critical importance of surveillance in all HIV-1-infected children and advocates for the adoption of dolutegravir (DTG) or other optimal formulations as first-line ART in settings where NNRTI resistance exceeds the WHO's 10% threshold. DTG's high resistance barrier, potent antiviral efficacy, and favorable safety profile makes it a superior choice for managing drug-resistant HIV-1, surpassing traditional antiretroviral therapies. Funding This work was supported by the Science and Technology Innovation Committee of Shenzhen Municipality (No. JCYJ20220531102202005) and the Natural Science Foundation of Guangdong Province (No. 2024A1515012118).
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Affiliation(s)
- Lingyun Ge
- School of Public Health, Shenzhen University Medical School, Shenzhen, China
| | - Yinsong Luo
- School of Public Health, Shenzhen University Medical School, Shenzhen, China
| | - Xiaorui Li
- School of Public Health, Shenzhen University Medical School, Shenzhen, China
| | - Yiyao Hu
- School of Public Health, Shenzhen University Medical School, Shenzhen, China
| | - Liqin Sun
- Department of Infectious Diseases, National Clinical Research Center for Infectious Diseases, Shenzhen Third People's Hospital, Shenzhen, China
| | - Fan Bu
- Department of Neurology & Psychology, The Fourth Clinical Medical College of Guangzhou University of Chinese Medicine, Shenzhen, Guangdong Province, China
| | - Duo Shan
- National Center for AIDS/STD Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing, China
| | - Jiaye Liu
- School of Public Health, Shenzhen University Medical School, Shenzhen, China
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Bishop MD, Korutaro V, Boyce CL, Beck IA, Styrchak SM, Knowles K, Ziemba L, Brummel SS, Coletti A, Jean-Philippe P, Chakhtoura N, Vhembo T, Cassim H, Owor M, Fairlie L, Moyo S, Chinula L, Lockman S, Frenkel LM. Characterizing HIV drug resistance in cases of vertical transmission in the VESTED randomized antiretroviral treatment trial. J Acquir Immune Defic Syndr 2024; 96:385-392. [PMID: 39175843 PMCID: PMC11338623 DOI: 10.1097/qai.0000000000003435] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/22/2023] [Accepted: 03/04/2024] [Indexed: 08/24/2024]
Abstract
Introduction VESTED (NCT03048422) compared the safety and efficacy of three antiretroviral treatment (ART) regimens in pregnant and postpartum women: dolutegravir+emtricitabine/tenofovir alafenamide fumarate; dolutegravir+emtricitabine/tenofovir disoproxil fumarate (TDF); efavirenz/emtricitabine/TDF. Vertical HIV transmission (VT) occurred to 4/617 (0.60%) live-born infants, who were evaluated for HIV drug resistance (HIVDR) and other risk factors. Setting In 2018-2020, pregnant (weeks-14-28) women living with HIV and ≤14 days of ART were enrolled at 22 international sites and followed with their infants through 50 weeks postpartum. Methods HIV sequences derived by single genome amplification (SGA) from longitudinally collected specimens were assessed from VT Cases for HIVDR in protease, reverse transcriptase, integrase, and the nef 3'polypurine tract (3'PPT). Results The four Case mothers were prescribed efavirenz-based-ART for 1-7 days prior to randomization to study ART. Their infants received postnatal nevirapine+/-zidovudine prophylaxis and were breastfed. A total of 833 SGA sequences were derived. The "major" (Stanford HIVDR Score ≥60) non-nucleoside reverse transcriptase inhibitor (NNRTI) mutation (K103N) was detected persistently in one viremic mother, and likely contributed to VT of HIVDR. Major NNRTI HIVDR mutations were detected in all three surviving infants. No integrase, nor high frequencies of 3'PPT mutations conferring dolutegravir HIVDR were detected. The timing of HIV infant diagnosis, plasma HIV RNA levels and HIVDR suggests one in utero, one peripartum, one early, and one late breastfeeding transmission. Conclusions VT was rare. New-onset NNRTI HIVDR in Case mothers was likely from efavirenz-ART prescribed prior to study dolutegravir-ART, and in one case appeared transmitted to the infant despite nevirapine prophylaxis.
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Affiliation(s)
- Marley D. Bishop
- Department of Global Infectious Diseases, Seattle Children’s Research Institute, 307 Westlake Ave N, Seattle, 98109, Washington, USA
| | - Violet Korutaro
- Children’s Foundation Uganda, Baylor College of Medicine, Block 5 Mulago Hospital, P. O. BOX 72052, Kampala 72052, Kamutarpala Uganda
| | - Ceejay L. Boyce
- Department of Global Infectious Diseases, Seattle Children’s Research Institute, 307 Westlake Ave N, Seattle, 98109, Washington, USA
| | - Ingrid A. Beck
- Department of Global Infectious Diseases, Seattle Children’s Research Institute, 307 Westlake Ave N, Seattle, 98109, Washington, USA
| | - Sheila M. Styrchak
- Department of Global Infectious Diseases, Seattle Children’s Research Institute, 307 Westlake Ave N, Seattle, 98109, Washington, USA
| | - Kevin Knowles
- Frontier Science and Technology Research Foundation, 4033 Maple Road Amherst, Buffalo, 14226, NY, USA
| | - Lauren Ziemba
- Centre for Biostatistics in AIDS Research Center for Biostatistics in AIDS Research, Harvard University T.H. Chan School of Public Health, FXB 507 677 Huntington Ave Center for Biostatistics in AIDS Research, Boston, 02115, MA, USA
| | - Sean S. Brummel
- Centre for Biostatistics in AIDS Research Center for Biostatistics in AIDS Research, Harvard University T.H. Chan School of Public Health, FXB 507 677 Huntington Ave Center for Biostatistics in AIDS Research, Boston, 02115, MA, USA
| | - Anne Coletti
- FHI 360, 359 Blackwell St. Suite 200, Durham, 27713, NC, USA
| | - Patrick Jean-Philippe
- Division of AIDS; Maternal Adolescent Pediatric Research Branch; Prevention Sciences Program, National Institute of Allergy and Infectious Diseases, 5601 Fishers Lane Room 8B21, MSC 9831, Bethesda, 20892, MD, USA
| | - Nahida Chakhtoura
- Eunice Kennedy Shriver National Institute of Child Health and Human Development, Maternal and Pediatric Infectious Disease Branch, 6710B Rockledge Drive, Bethesda, MD, USA 20892
| | - Tichaona Vhembo
- University of Zimbabwe-University of California San Francisco Collaborative Research Program (UZ-UCSF), 15 Phillips Ave, Belgravia Harare, Zimbabwe
| | - Haseena Cassim
- Perinatal HIV Research Unit, University of the Witwatersrand Johannesburg, Chris Hani Baragwanath Hospital P.O. Box 114, Diepkloof, 1864, Johannesburg, 2050, Gauteng, South Africa
| | - Maxensia Owor
- Makerere University –John Hopkins University Research Collaboration (MUJHU CARE LTD), CRS Upper Mulago Hill Road PO Box 23491, Kampala, Uganda
| | - Lee Fairlie
- Wits RHI, Maternal and Child Health, 22 Esselen Street Hillbrow, Johannesburg, Gauteng, South Africa 2001
| | - Sikhulile Moyo
- Botswana-Harvard AIDS Institute Partnership, Plot 1836 N Ring Rd, Gaborone, Botswana
- Division of Infectious Disease, Brigham and Women’s Hospital, 15 Francis St 2nd Floor, Boston, 02115, MA, USA
| | - Lameck Chinula
- Division of Global Women’s Health; Department of Obstetrics and Gynecology, University of North Carolina-Chapel Hill, 3009 Old Clinic Building Campus Box 7570, Chapel Hill, 27599, NC, USA
| | - Shahin Lockman
- Botswana-Harvard AIDS Institute Partnership, Plot 1836 N Ring Rd, Gaborone, Botswana
- Division of Infectious Disease, Brigham and Women’s Hospital, 15 Francis St 2nd Floor, Boston, 02115, MA, USA
- Harvard University T.H. Chan School of Public Health, Department of Immunology and Infectious Diseases School of Public Health, 655 Huntington Ave, Boston, 02115, MA, USA
| | - Lisa M. Frenkel
- Department of Global Infectious Diseases, Seattle Children’s Research Institute, 307 Westlake Ave N, Seattle, 98109, Washington, USA
- University of Washington, Department of Global Health, Medicine, Epidemiology and Pediatrics, 1959 NE Pacific St. Seattle 98195 WA
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