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Baral A, Liu J, Garcia-Davis S, Diggs BNA, Ayala L, Aka A, Agrawal YS, Messiah SE, Vidot DC. Prevalence of Metabolic Syndrome Among Emerging Adult Cannabis Users by Race/Ethnicity: Analysis of the 2009-2018 National Health and Nutrition Examination Surveys. AMERICAN JOURNAL OF MEDICINE OPEN 2024; 11:100069. [PMID: 39034940 PMCID: PMC11256325 DOI: 10.1016/j.ajmo.2024.100069] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Subscribe] [Scholar Register] [Received: 08/26/2023] [Revised: 03/02/2024] [Accepted: 03/24/2024] [Indexed: 07/23/2024]
Abstract
Background Association between cannabis use and metabolic syndrome (MetS) has been documented; yet variation by race/ethnicity is understudied. We examined cannabis use and MetS by race/ethnicity among emerging adults (18-25 years old), the age group with the highest prevalence of cannabis use. Methods Data from 18- to 25-year-olds who completed the National Health and Nutrition Examination Survey (2009-2018) were analyzed. Current cannabis use was defined as ≥1 day of use in the last 30 days. MetS was defined using standardized guidelines as ≥3 of the following: elevated fasting glucose, triglycerides, systolic (SBP) and/or diastolic blood pressure (DPB), waist circumference, and/or low high-density lipoprotein (HDL) cholesterol. Logistic regression was used to examine the association between current cannabis use (CCU) and MetS, adjusting for covariates. Results Of 3974 respondents, 48.8% were female, mean age 21.1 years (SD = 2.4), 56.7% non-Hispanic white, 20.4% Hispanic, and 14.0% non-Hispanic black (NHB). Hispanics had the highest MetS prevalence (7.9%) and lowest CCU prevalence (23.5%). NHB had highest CCU prevalence (33.4%, P < .0001) and lowest MetS prevalence (4.8%, P = .2543). CCUs had a higher mean SBP (P = .020) and Hispanics (P = .002) than never users. Conversely, NHB CCUs exhibited lower mean SBP than NHB never users (P = .008). CCUs had 42% reduced odds of MetS than never users (AOR: 0.58, 95% CI: 0.35-0.95). Among NHB, CCUs had 78% lower likelihood of having MetS than never users (AOR: 0.22, 95% CI: 0.06-0.81). Conclusions Cannabis use impacts MetS and blood pressure differently by race/ethnicity. Current cannabis use was associated with lower odds of MetS overall and among NHB. Further research is warranted to investigate how administration routes, dosages, and usage duration affect MetS.
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Affiliation(s)
- Amrit Baral
- University of Miami Miller School of Medicine, Department of Public Health Sciences, Miami, FL
- University of Miami School of Nursing and Health Studies, Miami, FL
| | - Jingxin Liu
- University of Miami Miller School of Medicine, Department of Public Health Sciences, Miami, FL
| | - Sandra Garcia-Davis
- University of Miami Miller School of Medicine, Department of Public Health Sciences, Miami, FL
| | - Bria-Necole A. Diggs
- University of Miami Miller School of Medicine, Department of Public Health Sciences, Miami, FL
- University of Miami School of Nursing and Health Studies, Miami, FL
| | - Lizelh Ayala
- University of Miami Miller School of Medicine, Department of Public Health Sciences, Miami, FL
| | - Anurag Aka
- University of Miami School of Nursing and Health Studies, Miami, FL
| | - Yash S. Agrawal
- University of Miami School of Nursing and Health Studies, Miami, FL
| | - Sarah E. Messiah
- University of Texas Health Science Center at Houston, School of Public Health, Houston, TX
- Center for Pediatric Population Health, University of Texas Health Science Center at Houston School of Public Health, Houston, TX
| | - Denise C. Vidot
- University of Miami Miller School of Medicine, Department of Public Health Sciences, Miami, FL
- University of Miami School of Nursing and Health Studies, Miami, FL
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2
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Cozier G, Andrews RC, Frinculescu A, Kumar R, May B, Tooth T, Collins P, Costello A, Haines TSF, Freeman TP, Blagbrough IS, Scott J, Shine T, Sutcliffe OB, Husbands SM, Leach J, Bowman RW, Pudney CR. Instant Detection of Synthetic Cannabinoids on Physical Matrices, Implemented on a Low-Cost, Ultraportable Device. Anal Chem 2023; 95:13829-13837. [PMID: 37642957 PMCID: PMC10515102 DOI: 10.1021/acs.analchem.3c01844] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/28/2023] [Accepted: 08/01/2023] [Indexed: 08/31/2023]
Abstract
Synthetic cannabinoids (SCs) make up a class of novel psychoactive substances (NPS), used predominantly in prisons and homeless communities in the U.K. SCs can have severe side effects, including psychosis, stroke, and seizures, with numerous reported deaths associated with their use. The chemical diversity of SCs presents the major challenge to their detection since approaches relying on specific molecular recognition become outdated almost immediately. Ideally one would have a generic approach to detecting SCs in portable settings. The problem of SC detection is more challenging still because the majority of SCs enter the prison estate adsorbed onto physical matrices such as paper, fabric, or herb materials. That is, regardless of the detection modality used, the necessary extraction step reduces the effectiveness and ability to rapidly screen materials on-site. Herein, we demonstrate a truly instant generic test for SCs, tested against real-world drug seizures. The test is based on two advances. First, we identify a spectrally silent region in the emission spectrum of most physical matrices. Second, the finding that background signals (including from autofluorescence) can be accurately predicted is based on tracking the fraction of absorbed light from the irradiation source. Finally, we demonstrate that the intrinsic fluorescence of a large range of physical substrates can be leveraged to track the presence of other drugs of interest, including the most recent iterations of benzodiazepines and opioids. We demonstrate the implementation of our presumptive test in a portable, pocket-sized device that will find immediate utility in prisons and law enforcement agencies around the world.
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Affiliation(s)
- Gyles
E. Cozier
- Department
of Life Sciences, Department of Chemistry, and Centre for Sustainable and Circular
Technologies, University of Bath, Bath BA2 7AY, U.K.
| | - Rachael C. Andrews
- Department
of Life Sciences, Department of Chemistry, and Centre for Sustainable and Circular
Technologies, University of Bath, Bath BA2 7AY, U.K.
| | - Anca Frinculescu
- Department
of Analytical, Environmental and Forensic Sciences, King’s College London, 150 Stamford Street, London SE1 9NH, U.K.
- TICTAC
Communications Ltd., Room 1.159 Jenner Wing, St. George’s University of London, Cranmer Terrace, London SW17 0RE, U.K.
| | - Ranjeet Kumar
- Department
of Life Sciences, Department of Chemistry, and Centre for Sustainable and Circular
Technologies, University of Bath, Bath BA2 7AY, U.K.
| | - Benedict May
- Department
of Life Sciences, Department of Chemistry, and Centre for Sustainable and Circular
Technologies, University of Bath, Bath BA2 7AY, U.K.
| | - Tom Tooth
- HMP
Bristol, 19 Cambridge
Road, Horfield, Bristol BS7 8PS, U.K.
| | - Peter Collins
- Avon
and Somerset Police, Valley Road, Bristol BS20
8JJ, U.K.
| | - Andrew Costello
- MANchester
DRug Analysis & Knowledge Exchange (MANDRAKE), Department of Natural
Sciences, Manchester Metropolitan University, Manchester M1 5GD, U.K
- Greater
Manchester Police, Openshaw Complex, Lawton Street,
Openshaw, Manchester M11 2NS, U.K.
| | - Tom S. F. Haines
- Department of Computer Science and Department of
Psychology, University of Bath, Bath BA2 7AY, U.K.
| | - Tom P. Freeman
- Department of Computer Science and Department of
Psychology, University of Bath, Bath BA2 7AY, U.K.
| | - Ian S. Blagbrough
- Department
of Life Sciences, Department of Chemistry, and Centre for Sustainable and Circular
Technologies, University of Bath, Bath BA2 7AY, U.K.
| | - Jennifer Scott
- Centre
for Academic Primary Care, Bristol Medical
School, Bristol BS8 2PN, U.K.
| | - Trevor Shine
- TICTAC
Communications Ltd., Room 1.159 Jenner Wing, St. George’s University of London, Cranmer Terrace, London SW17 0RE, U.K.
| | - Oliver B. Sutcliffe
- MANchester
DRug Analysis & Knowledge Exchange (MANDRAKE), Department of Natural
Sciences, Manchester Metropolitan University, Manchester M1 5GD, U.K
| | - Stephen M. Husbands
- Department
of Life Sciences, Department of Chemistry, and Centre for Sustainable and Circular
Technologies, University of Bath, Bath BA2 7AY, U.K.
| | - Jonathan Leach
- Institute
of Chemical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, U.K.
| | - Richard W. Bowman
- School
of Physics and Astronomy, University of
Glasgow, Glasgow G12 8QQ, U.K.
| | - Christopher R. Pudney
- Department
of Life Sciences, Department of Chemistry, and Centre for Sustainable and Circular
Technologies, University of Bath, Bath BA2 7AY, U.K.
- Centre
for Therapeutic Innovation, University of
Bath, Bath BA2 7AY, U.K.
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3
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Skumlien M, Craft S, Scott J, Freeman TP. Turning down the spice: tackling the problems of synthetic cannabinoids. BMJ 2023; 382:e076611. [PMID: 37604578 DOI: 10.1136/bmj-2023-076611] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 08/23/2023]
Affiliation(s)
- Martine Skumlien
- Addiction and Mental Health Group (AIM), Department of Psychology, University of Bath, Bath, UK
| | - Sam Craft
- Addiction and Mental Health Group (AIM), Department of Psychology, University of Bath, Bath, UK
| | - Jennifer Scott
- Bristol Medical School, University of Bristol, Bristol, UK
| | - Tom P Freeman
- Addiction and Mental Health Group (AIM), Department of Psychology, University of Bath, Bath, UK
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4
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Hindson SA, Andrews RC, Danson MJ, van der Kamp MW, Manley AE, Sutcliffe OB, Haines TSF, Freeman TP, Scott J, Husbands SM, Blagbrough IS, Anderson JLR, Carbery DR, Pudney CR. Synthetic cannabinoid receptor agonists are monoamine oxidase-A selective inhibitors. FEBS J 2023; 290:3243-3257. [PMID: 36708234 PMCID: PMC10952593 DOI: 10.1111/febs.16741] [Citation(s) in RCA: 2] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/02/2022] [Revised: 01/13/2023] [Accepted: 01/27/2023] [Indexed: 01/29/2023]
Abstract
Synthetic cannabinoid receptor agonists (SCRAs) are one of the fastest growing classes of recreational drugs. Despite their growth in use, their vast chemical diversity and rapidly changing landscape of structures make understanding their effects challenging. In particular, the side effects for SCRA use are extremely diverse, but notably include severe outcomes such as cardiac arrest. These side effects appear at odds with the main putative mode of action, as full agonists of cannabinoid receptors. We have hypothesized that SCRAs may act as MAO inhibitors, owing to their structural similarity to known monoamine oxidase inhibitors (MAOI's) as well as matching clinical outcomes (hypertensive crisis) of 'monoaminergic toxicity' for users of MAOIs and some SCRA use. We have studied the potential for SCRA-mediated inhibition of MAO-A and MAO-B via a range of SCRAs used commonly in the UK, as well as structural analogues to prove the atomistic determinants of inhibition. By combining in silico and experimental kinetic studies we demonstrate that SCRAs are MAO-A-specific inhibitors and their affinity can vary significantly between SCRAs, most notably affected by the nature of the SCRA 'head' group. Our data allow us to posit a putative mechanism of inhibition. Crucially our data demonstrate that SCRA activity is not limited to just cannabinoid receptor agonism and that alternative interactions might account for some of the diversity of the observed side effects and that these effects can be SCRA-specific.
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Affiliation(s)
- Sarah A. Hindson
- Department of Biology and BiochemistryUniversity of BathBA2 7AYBathUK
| | - Rachael C. Andrews
- Department of ChemistryUniversity of BathBA2 7AYBathUK
- Centre for Sustainable and Circular TechnologiesUniversity of BathBA2 7AYBathUK
| | - Michael J. Danson
- Department of Biology and BiochemistryUniversity of BathBA2 7AYBathUK
| | | | - Amy E. Manley
- Faculty of Health SciencesUniversity of BristolBS8 1THBristolUK
| | - Oliver B. Sutcliffe
- MANchester DRug Analysis & Knowledge Exchange (MANDRAKE), Department of Natural SciencesManchester Metropolitan UniversityM15 5GDManchesterUK
| | | | | | - Jennifer Scott
- Faculty of Health SciencesUniversity of BristolBS8 1THBristolUK
| | | | - Ian S. Blagbrough
- Department of Pharmacy and PharmacologyUniversity of BathBA2 7AYBathUK
| | | | - David R. Carbery
- Department of ChemistryUniversity of BathBA2 7AYBathUK
- Centre for Sustainable and Circular TechnologiesUniversity of BathBA2 7AYBathUK
| | - Christopher R. Pudney
- Department of Biology and BiochemistryUniversity of BathBA2 7AYBathUK
- Centre for Sustainable and Circular TechnologiesUniversity of BathBA2 7AYBathUK
- Centre for Therapeutic InnovationUniversity of BathBA2 7AYBathUK
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5
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Andrews R, May B, Hernández FJ, Cozier GE, Townsend PA, Sutcliffe OB, Haines TSF, Freeman TP, Scott J, Husbands SM, Blagbrough IS, Bowman RW, Lewis SE, Grayson MN, Crespo-Otero R, Carbery DR, Pudney CR. Photochemical Fingerprinting Is a Sensitive Probe for the Detection of Synthetic Cannabinoid Receptor Agonists; toward Robust Point-of-Care Detection. Anal Chem 2023; 95:703-713. [PMID: 36599091 PMCID: PMC9850351 DOI: 10.1021/acs.analchem.2c02529] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/06/2023]
Abstract
With synthetic cannabinoid receptor agonist (SCRA) use still prevalent across Europe and structurally advanced generations emerging, it is imperative that drug detection methods advance in parallel. SCRAs are a chemically diverse and evolving group, which makes rapid detection challenging. We have previously shown that fluorescence spectral fingerprinting (FSF) has the potential to provide rapid assessment of SCRA presence directly from street material with minimal processing and in saliva. Enhancing the sensitivity and discriminatory ability of this approach has high potential to accelerate the delivery of a point-of-care technology that can be used confidently by a range of stakeholders, from medical to prison staff. We demonstrate that a range of structurally distinct SCRAs are photochemically active and give rise to distinct FSFs after irradiation. To explore this in detail, we have synthesized a model series of compounds which mimic specific structural features of AM-694. Our data show that FSFs are sensitive to chemically conservative changes, with evidence that this relates to shifts in the electronic structure and cross-conjugation. Crucially, we find that the photochemical degradation rate is sensitive to individual structures and gives rise to a specific major product, the mechanism and identification of which we elucidate through density-functional theory (DFT) and time-dependent DFT. We test the potential of our hybrid "photochemical fingerprinting" approach to discriminate SCRAs by demonstrating SCRA detection from a simulated smoking apparatus in saliva. Our study shows the potential of tracking photochemical reactivity via FSFs for enhanced discrimination of SCRAs, with successful integration into a portable device.
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Affiliation(s)
- Rachael
C. Andrews
- Department
of Chemistry, University of Bath, BathBA2 7AY, U.K.,Centre
for Sustainable Chemical Technology, University
of Bath, BathBA2 7AY, U.K.
| | - Benedict May
- Department
of Biology and Biochemistry, University
of Bath, BathBA2 7AY, U.K.
| | | | - Gyles E. Cozier
- Department
of Biology and Biochemistry, University
of Bath, BathBA2 7AY, U.K.
| | - Piers A. Townsend
- School
of Applied Sciences, University of the West
of England, BristolBS16 1QY, U.K.
| | - Oliver B. Sutcliffe
- MANchester
DRug Analysis & Knowledge Exchange (MANDRAKE), Department of Natural
Sciences, Manchester Metropolitan University, ManchesterM15 5GD, U.K.
| | - Tom S. F. Haines
- Department
of Computer Science, University of Glasgow, GlasgowG12 8QQ, U.K.
| | - Tom P. Freeman
- Department
of Psychology. University of Glasgow, GlasgowG12 8QQ, U.K.
| | - Jennifer Scott
- Department
of Pharmacy and Pharmacology, University
of Glasgow, GlasgowG12 8QQ, U.K.
| | - Stephen M. Husbands
- Department
of Pharmacy and Pharmacology, University
of Glasgow, GlasgowG12 8QQ, U.K.
| | - Ian S. Blagbrough
- Department
of Pharmacy and Pharmacology, University
of Glasgow, GlasgowG12 8QQ, U.K.
| | - Richard W. Bowman
- School
of Physics and Astronomy, University of
Glasgow, GlasgowG12 8QQ, U.K.
| | - Simon E. Lewis
- Department
of Chemistry, University of Bath, BathBA2 7AY, U.K.
| | - Matthew N. Grayson
- Department
of Chemistry, University of Bath, BathBA2 7AY, U.K.,Centre
for Sustainable Chemical Technology, University
of Bath, BathBA2 7AY, U.K.,
| | - Rachel Crespo-Otero
- Department
of Chemistry, Queen Mary University of London, LondonE1 4NS, U.K.,
| | - David R. Carbery
- Department
of Chemistry, University of Bath, BathBA2 7AY, U.K.,
| | - Christopher R. Pudney
- Centre
for Sustainable Chemical Technology, University
of Bath, BathBA2 7AY, U.K.,Department
of Biology and Biochemistry, University
of Bath, BathBA2 7AY, U.K.,Centre for
Therapeutic Innovation, University
of Bath, BathBA2 7AY, U.K.,
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6
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Vaccaro G, Massariol A, Guirguis A, Kirton SB, Stair JL. NPS detection in prison: A systematic literature review of use, drug form, and analytical approaches. Drug Test Anal 2022; 14:1350-1367. [PMID: 35355411 PMCID: PMC9545023 DOI: 10.1002/dta.3263] [Citation(s) in RCA: 15] [Impact Index Per Article: 7.5] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/24/2021] [Revised: 02/28/2022] [Accepted: 03/25/2022] [Indexed: 11/07/2022]
Abstract
This paper presents a systematic literature review on the detection of new psychoactive substances (NPS) in prison settings. It includes the most frequently reported NPS classes, the routes and forms used for smuggling, and the methods employed to analyse biological and non-biological samples. The search was carried out using MEDLINE (EBSCO), Scopus (ELSEVIER), PubMed (NCBI), and Web of Science (Clarivate) databases, along with reports from the grey literature in line with the PRISMA-S guidelines. A total of 2708 records were identified, of which 50 met the inclusion criteria. Findings showed the most prevalent NPS class reported in prison was synthetic cannabinoids (SCs). The most frequently reported SCs in non-biological samples were 4F-MDMB-BINACA, MDMB-4en-PINACA, and 5F-ADB. These were smuggled mainly through the postal services deposited on paper or herbal matrices. Concentrations of SCs detected on seized paper ranged between 0.05 and 1.17 mg/cm2 . The SCs most frequently reported in biological specimens (i.e., urine, blood, saliva, and wastewater) were 5F-MDMB-PICA, 4F-MDMB-BINACA, and MDMB-4en-PINACA. Concentrations of SCs reported in femoral blood and serum were 0.12-0.48 ng/ml and 34-17 ng/ml, respectively. Hyphenated techniques were predominantly employed and generally successful for the detection of NPS in biological (i.e., LC-HRMS/MS) and non-biological samples (i.e., LC-HRMS/MS and GC-MS). The onsite technique IMS showed promise for detecting SCs in various forms; however, immunoassays were not recommended. Future work should focus on accurate in-field detection of SCs deposited on paper and in urine and saliva to improve real-time decision-making, as well as wastewater and air monitoring for overall drug use trends.
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Affiliation(s)
- Giorgia Vaccaro
- Department of Clinical, Pharmaceutical and Biological Sciences, School of Life and Medical SciencesUniversity of HertfordshireHatfieldUK
| | - Anna Massariol
- Department of Clinical, Pharmaceutical and Biological Sciences, School of Life and Medical SciencesUniversity of HertfordshireHatfieldUK
| | - Amira Guirguis
- Department of Clinical, Pharmaceutical and Biological Sciences, School of Life and Medical SciencesUniversity of HertfordshireHatfieldUK
- Swansea University Medical School, The Grove, Singleton CampusSwanseaUK
| | - Stewart B. Kirton
- Department of Clinical, Pharmaceutical and Biological Sciences, School of Life and Medical SciencesUniversity of HertfordshireHatfieldUK
| | - Jacqueline L. Stair
- Department of Clinical, Pharmaceutical and Biological Sciences, School of Life and Medical SciencesUniversity of HertfordshireHatfieldUK
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7
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Yoganathan P, Claridge H, Chester L, Englund A, Kalk NJ, Copeland CS. Synthetic Cannabinoid-Related Deaths in England, 2012-2019. Cannabis Cannabinoid Res 2022; 7:516-525. [PMID: 33998886 PMCID: PMC9418359 DOI: 10.1089/can.2020.0161] [Citation(s) in RCA: 10] [Impact Index Per Article: 5.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/26/2022] Open
Abstract
Aim: To identify drug-related death trends associated with synthetic cannabinoid receptor agonists (SCRAs) reported to the National Programme on Substance Abuse Deaths (NPSAD) from England. Design: Case reports from NPSAD (England) where a SCRA was detected in post-mortem tissue(s) and/or implicated in the death were extracted, analyzed, and compared against non-SCRA-related deaths that occurred over the same time period (2012-2019). Findings: One hundred sixty-five death SCRA-related reports were extracted, with 18 different SCRAs detected. Following the first death in 2012, a subsequent sharp increase in reporting is evident. Acute SCRA use was the underlying cause of death in the majority of cases (75.8%) with cardiorespiratory complications the most frequently cited underlying physiological cause (13.4%). SCRA users were predominantly found dead (68.6%), with a large proportion of those witnessed becoming unresponsive described as suddenly collapsing (81.6%). Psychoactive polydrug use was detected in 90.3% of cases, with alcohol the most commonly co-detected (50.3%), followed by opioids (42.2%), benzodiazepines/Z-drugs (32.1%), stimulants (32.1%, [28.5% cocaine]), and cannabis (24.8%). Compared to all non-SCRA-related NPSAD deaths occurring over the same time period, SCRA-related decedents were more predominantly male (90.3% vs. 72.0%; p<0.01), and lived in more deprived areas (p<0.01). While a comparatively significant proportion of decedents were homeless (19.4% vs. 4.1%), living in a hostel (13.3% vs. 2.3%) or in prison (4.9% vs. 0.2%) at time of death (all p<0.01), the greatest majority of SCRA-related decedents were living in private residential accommodations (57.6%). Conclusions: This is the largest dataset regarding SCRA-related mortalities reported to date. Reporting of SCRA-related deaths in England have increased considerably, with polydrug use a specific concern. Lack of effective deterrents to SCRA use under current UK legislation, compounded by limited knowledge regarding the physiological impacts of SCRA consumption and their interaction with other co-administered substances are contributory factors to the occurrence of SCRA-related mortalities in an increasingly deprived demographic.
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Affiliation(s)
- Pruntha Yoganathan
- Population Health Research Institute, St George's, University of London, London, United Kingdom
| | - Hugh Claridge
- Population Health Research Institute, St George's, University of London, London, United Kingdom
| | - Lucy Chester
- Department of Psychosis Studies and Institute of Psychiatry, Psychology & Neuroscience, King's College London, London, United Kingdom
| | - Amir Englund
- Department of Addictions, Institute of Psychiatry, Psychology & Neuroscience, King's College London, London, United Kingdom
- South London and Maudsley NHS Foundation Trust, London, United Kingdom
| | - Nicola J. Kalk
- Department of Addictions, Institute of Psychiatry, Psychology & Neuroscience, King's College London, London, United Kingdom
- South London and Maudsley NHS Foundation Trust, London, United Kingdom
- KCH Alcohol Care Team, South London and Maudsley NHS Foundation Trust, London, United Kingdom
| | - Caroline S. Copeland
- Population Health Research Institute, St George's, University of London, London, United Kingdom
- Institute of Pharmaceutical Science, King's College London, London, United Kingdom
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8
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Deen AA, Claridge H, Treble RD, Hamnett HJ, Copeland CS. Deaths from novel psychoactive substances in England, Wales and Northern Ireland: Evaluating the impact of the UK psychoactive substances act 2016. J Psychopharmacol 2021; 35:1315-1323. [PMID: 34182812 PMCID: PMC8600590 DOI: 10.1177/02698811211026645] [Citation(s) in RCA: 5] [Impact Index Per Article: 1.7] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 11/21/2022]
Abstract
BACKGROUND 'Legal highs' began appearing in the UK in the mid-2000s. Whilst many of these substances were controlled under the 1971 Misuse of Drugs Act, novel compounds and new variants of controlled compounds were continuously being introduced to the recreational drug market. The Psychoactive Substances Act (PSA) was therefore implemented in 2016 as a blanket ban on all novel psychoactive substances (NPS). AIM To evaluate the impact of the PSA on deaths following NPS use in England, Wales and Northern Ireland. METHODS Cases reported to the National Programme on Substance Abuse Deaths where death had occurred 3 years pre- or post-implementation of the PSA were extracted. Cases with NPS detected at post-mortem were analysed and compared against cases non-NPS cases. RESULTS 293 deaths with NPS detected were identified; 91 occurring before the PSA and 202 afterwards, indicating an 222.0% post-PSA increase. Contrastingly, non-NPS drug-related death case reporting increased by only 8.0%. Synthetic cannabinoid, anxiolytic/sedative and stimulant NPS were detected in the largest proportions of deaths pre-PSA; post-PSA stimulant NPS detections reduced whilst synthetic cannabinoid and anxiolytic/sedative detections increased.Post-PSA, average decedent age increased significantly (mean age pre-PSA 34.4 ± 10.8 vs post-PSA 38.3 ± 9.4), and they were significantly more likely to have been living in deprived areas (pre-PSA 50.0% vs post-PSA 65.9%). CONCLUSIONS Reporting of deaths following NPS use has risen despite introduction of the PSA. Whilst deaths amongst younger individuals and those living in more affluent areas has reduced, additional approaches to prohibition are needed to curb their persistence in deprived demographics.
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Affiliation(s)
- Adrian A Deen
- Institute of Pharmaceutical Sciences,
King’s College London, London, United Kingdom
| | - Hugh Claridge
- Population Health Research Institute,
St George’s, University of London, London, United Kingdom
| | | | - Hilary J Hamnett
- School of Chemistry, University of
Lincoln, Lincoln, United Kingdom
| | - Caroline S Copeland
- Institute of Pharmaceutical Sciences,
King’s College London, London, United Kingdom,Population Health Research Institute,
St George’s, University of London, London, United Kingdom,Caroline S Copeland, Institute of
Pharmaceutical Sciences, King’s College London, Franklin Wilkins Building,
Stamford Street, London, SE1 9 NH, United Kingdom.
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9
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Wille SMR, Elliott S. The Future of Analytical and Interpretative Toxicology: Where are We Going and How Do We Get There? J Anal Toxicol 2021; 45:619-632. [PMID: 33245325 DOI: 10.1093/jat/bkaa133] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/09/2020] [Revised: 07/02/2020] [Accepted: 11/18/2020] [Indexed: 01/26/2023] Open
Abstract
(Forensic) toxicology has faced many challenges, both analytically and interpretatively, especially in relation to an increase in potential drugs of interest. Analytical toxicology and its application to medicine and forensic science have progressed rapidly within the past centuries. Technological innovations have enabled detection of more substances with increasing sensitivity in a variety of matrices. Our understanding of the effects (both intended and unintended) have also increased along with determination and degree of toxicity. However, it is clear there is even more to understand and consider. The analytical focus has been on typical matrices such as blood and urine but other matrices could further increase our understanding, especially in postmortem (PM) situations. Within this context, the role of PM changes and potential redistribution of drugs requires further research and identification of markers of its occurrence and extent. Whilst instrumentation has improved, in the future, nanotechnology may play a role in selective and sensitive analysis as well as bioassays. Toxicologists often only have an advisory impact on pre-analytical and pre-interpretative considerations. The collection of appropriate samples at the right time in an appropriate way as well as obtaining sufficient circumstance background is paramount in ensuring an effective analytical strategy to provide useful results that can be interpreted within context. Nevertheless, key interpretative considerations such as pharmacogenomics and drug-drug interactions as well as determination of tolerance remain and in the future, analytical confirmation of an individual's metabolic profile may support a personalized medicine and judicial approach. This should be supported by the compilation and appropriate application of drug data pursuant to the situation. Specifically, in PM circumstances, data pertaining to where a drug was not/may have been/was contributory will be beneficial with associated pathological considerations. This article describes the challenges faced within toxicology and discusses progress to a future where they are being addressed.
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Affiliation(s)
- Sarah M R Wille
- Department of Toxicology, National Institute for Criminalistics and Criminology, Brussels, Belgium
| | - Simon Elliott
- Elliott Forensic Consulting Ltd, Birmingham, UK.,Department Analytical, Environmental & Forensic Science, King's College London, London, UK
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Cannabis et cannabinoïdes de synthèse. À propos de leur détection biologique. BULLETIN DE L'ACADÉMIE NATIONALE DE MÉDECINE 2020; 204:577-582. [PMID: 32300253 PMCID: PMC7161525 DOI: 10.1016/j.banm.2020.04.003] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Subscribe] [Scholar Register] [Received: 01/10/2020] [Accepted: 04/07/2020] [Indexed: 11/21/2022]
Abstract
Parmi la soixantaine de cannabinoïdes présents dans le cannabis sativa indica on trouve essentiellement des terpénophénols, parmi lesquels figure le delta-9-trans tétrahydrocannabinol (Δ9-THC) qui constitue le principal produit psychoactif chez l’homme. Depuis une dizaine d’années, avec l’émergence du e-commerce et la recherche pharmaceutique sur des médicaments originaux, des dérivés synthétiques du Δ9-THC ont fait leur apparition. Ces molécules, sous le nom générique anglo-saxon de « spices », ont des structures chimiques très différentes, mais se lient toutes sur les mêmes récepteurs CB1 et CB2. Elles miment les effets du Δ9-THC, avec des effets pharmacologiques plus puissants, et donc des effets secondaires bien plus délétères et des durées d’action augmentées. L’usage de tous les cannabinoïdes est contrôlé, ce qui nécessite de disposer de méthodes analytiques performantes pour leur détection. L’objet de cette mini revue est de faire le point sur les possibilités actuelles de mise en évidence et de discuter, en fonction de la matrice biologique utilisée (sang, urine, salive, sueur, air expiré, cheveux) des avantages et des limitations de chaque approche.
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