Genetic-Guided Pharmacotherapy for Coronary Artery Disease: A Systematic and Critical Review of Economic Evaluations.

cardiovascular disease coronary artery disease economic evaluation genetic testing pharmacogenetics systematic review

Journal

Journal of the American Heart Association
ISSN: 2047-9980
Titre abrégé: J Am Heart Assoc
Pays: England
ID NLM: 101580524

Informations de publication

Date de publication:
05 Mar 2024
Historique:
medline: 11 3 2024
pubmed: 23 2 2024
entrez: 23 2 2024
Statut: ppublish

Résumé

Genetic-guided pharmacotherapy (PGx) is not recommended in clinical guidelines for coronary artery disease (CAD). We aimed to examine the extent and quality of evidence from economic evaluations of PGx in CAD and to identify variables influential in changing conclusions on cost-effectiveness. From systematic searches across 6 databases, 2 independent reviewers screened, included, and rated the methodological quality of economic evaluations of PGx testing to guide pharmacotherapy for patients with CAD. Of 35 economic evaluations included, most were model-based cost-utility analyses alone, or alongside cost-effectiveness analyses of PGx testing to stratify patients into antiplatelets (25/35), statins (2/35), pain killers (1/35), or angiotensin-converting enzyme inhibitors (1/35) to predict CAD risk (8/35) or to determine the coumadin doses (1/35). To stratify patients into antiplatelets (96/151 comparisons with complete findings of PGx versus non-PGx), PGx was more effective and more costly than non-PGx clopidogrel (28/43) but less costly than non-PGx prasugrel (10/15) and less costly and less effective than non-PGx ticagrelor (22/25). To predict CAD risk (51/151 comparisons), PGx using genetic risk scores was more effective and less costly than clinical risk score (13/17) but more costly than no risk score (16/19) or no treatment (9/9). The remaining comparisons were too few to observe any trend. Mortality risk was the most common variable (47/294) changing conclusions. Economic evaluations to date found PGx to stratify patients with CAD into antiplatelets or to predict CAD risk to be cost-effective, but findings varied based on the non-PGx comparators, underscoring the importance of considering local practice in deciding whether to adopt PGx.

Sections du résumé

BACKGROUND BACKGROUND
Genetic-guided pharmacotherapy (PGx) is not recommended in clinical guidelines for coronary artery disease (CAD). We aimed to examine the extent and quality of evidence from economic evaluations of PGx in CAD and to identify variables influential in changing conclusions on cost-effectiveness.
METHODS AND RESULTS RESULTS
From systematic searches across 6 databases, 2 independent reviewers screened, included, and rated the methodological quality of economic evaluations of PGx testing to guide pharmacotherapy for patients with CAD. Of 35 economic evaluations included, most were model-based cost-utility analyses alone, or alongside cost-effectiveness analyses of PGx testing to stratify patients into antiplatelets (25/35), statins (2/35), pain killers (1/35), or angiotensin-converting enzyme inhibitors (1/35) to predict CAD risk (8/35) or to determine the coumadin doses (1/35). To stratify patients into antiplatelets (96/151 comparisons with complete findings of PGx versus non-PGx), PGx was more effective and more costly than non-PGx clopidogrel (28/43) but less costly than non-PGx prasugrel (10/15) and less costly and less effective than non-PGx ticagrelor (22/25). To predict CAD risk (51/151 comparisons), PGx using genetic risk scores was more effective and less costly than clinical risk score (13/17) but more costly than no risk score (16/19) or no treatment (9/9). The remaining comparisons were too few to observe any trend. Mortality risk was the most common variable (47/294) changing conclusions.
CONCLUSIONS CONCLUSIONS
Economic evaluations to date found PGx to stratify patients with CAD into antiplatelets or to predict CAD risk to be cost-effective, but findings varied based on the non-PGx comparators, underscoring the importance of considering local practice in deciding whether to adopt PGx.

Identifiants

pubmed: 38390792
doi: 10.1161/JAHA.123.030058
pmc: PMC10944053
doi:

Substances chimiques

Prasugrel Hydrochloride G89JQ59I13
Clopidogrel A74586SNO7
Warfarin 5Q7ZVV76EI

Types de publication

Review Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

e030058

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Auteurs

Ka Keat Lim (KK)

School of Life Course & Population Sciences Faculty of Life Sciences & Medicine, King's College London London United Kingdom.

Rositsa Koleva-Kolarova (R)

Health Economics Research Centre, Nuffield Department of Population Health University of Oxford Oxford United Kingdom.

Hanin Farhana Kamaruzaman (HF)

Health Economics and Health Technology Assessment (HEHTA), School of Health and Wellbeing University of Glasgow Glasgow United Kingdom.
Malaysian Health Technology Assessment Section (MaHTAS), Medical Development Division, Ministry of Health Putrajaya Malaysia.

Ahmad Amir Kamil (AA)

School of Life Course & Population Sciences Faculty of Life Sciences & Medicine, King's College London London United Kingdom.

Phil Chowienczyk (P)

School of Life Course & Population Sciences Faculty of Life Sciences & Medicine, King's College London London United Kingdom.
King's College London British Heart Foundation Centre St. Thomas' Hospital, Westminster Bridge London United Kingdom.

Charles D A Wolfe (CDA)

School of Life Course & Population Sciences Faculty of Life Sciences & Medicine, King's College London London United Kingdom.
National Institute for Health Research (NIHR) Collaboration for Leadership in Applied Health Research and Care (CLAHRC), South London London United Kingdom.

Julia Fox-Rushby (J)

School of Life Course & Population Sciences Faculty of Life Sciences & Medicine, King's College London London United Kingdom.

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