Real-World Utilization of Medications With Pharmacogenetic Recommendations in Older Adults: A Scoping Review

IF 3.1 3区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Bella D. Ianni, Chin Hang Yiu, Edwin C. K. Tan, Christine Y. Lu
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引用次数: 0

Abstract

Pharmacogenetic testing provides patient genotype information which could influence medication selection and dosing for optimal patient care. Insurance coverage for pharmacogenetic testing varies widely. A better understanding of the commonly used medications with clinically important pharmacogenetic recommendations can inform which medications and/or genes should be prioritized for coverage and reimbursement in the context of finite healthcare resources. The aim of this scoping review was to collate previous studies that investigated the utilization rate of medications that could be guided by pharmacogenetic testing. Included studies utilized electronic medical records or claims data to assess pharmacogenetic medication prescription rates for older adults (≥ 65 years old). Identified pharmacogenetic medications were classified according to therapeutic class and assessed for actionability based on the Clinical Pharmacogenetics Implementation Consortium guidelines. Across the 31 included studies, analgesic (n = 29), psychotropic (n = 29), and cardiovascular (n = 27) therapeutic classes were most commonly investigated. Study populations were primarily generalized (48%); however, some studies focused on specific populations, such as, cancer (n = 6), mental health (n = 1), and nursing home (n = 2) cohorts. A total of 215 unique pharmacogenetic medications were reported, of which, 82 were associated with actionable pharmacogenetic recommendations. The most frequent genes implicated in potential drug–gene interactions with these actionable pharmacogenetic drugs were CYP2D6 (25.6%), CYP2C19 (18.3%), and CYP2C9 (11%). Medications most frequently prescribed included pantoprazole (range 0%–49.6%), simvastatin (range 0%–54.9%), and ondansetron (range 0.1%–62.6%). Overall, the frequently prescribed medications and associated genes identified in this review could guide pharmacogenetic testing implementation into clinical practice, including insurer subsidization.

Abstract Image

药物遗传学推荐在老年人中的实际应用:一项范围综述
药物遗传学检测提供了患者基因型信息,可以影响药物选择和剂量,以获得最佳的患者护理。药物遗传学检测的保险范围差别很大。更好地了解具有重要临床药理学建议的常用药物,可以告知在有限医疗资源的情况下,哪些药物和/或基因应该优先获得覆盖和报销。本综述的目的是整理以前的研究,调查药物的利用率,可以指导药物遗传学测试。纳入的研究利用电子医疗记录或索赔数据来评估老年人(≥65岁)的药物遗传药物处方率。已确定的药物遗传学药物根据治疗类别进行分类,并根据临床药物遗传学实施联盟指南评估可操作性。在纳入的31项研究中,镇痛药(n = 29)、精神药物(n = 29)和心血管治疗(n = 27)是最常见的研究类别。研究人群主要是广义人群(48%);然而,一些研究侧重于特定人群,如癌症(n = 6)、心理健康(n = 1)和养老院(n = 2)队列。总共报告了215种独特的药物遗传学药物,其中82种与可操作的药物遗传学建议相关。与这些可操作的药物遗传药物潜在的药物-基因相互作用相关的最常见基因是CYP2D6(25.6%)、CYP2C19(18.3%)和CYP2C9(11%)。最常用的处方药物包括泮托拉唑(0%-49.6%)、辛伐他汀(0%-54.9%)和昂丹司琼(0.1%-62.6%)。总的来说,本综述中确定的常用处方药和相关基因可以指导药物遗传学检测在临床实践中的实施,包括保险公司的补贴。
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来源期刊
Cts-Clinical and Translational Science
Cts-Clinical and Translational Science 医学-医学:研究与实验
CiteScore
6.70
自引率
2.60%
发文量
234
审稿时长
6-12 weeks
期刊介绍: Clinical and Translational Science (CTS), an official journal of the American Society for Clinical Pharmacology and Therapeutics, highlights original translational medicine research that helps bridge laboratory discoveries with the diagnosis and treatment of human disease. Translational medicine is a multi-faceted discipline with a focus on translational therapeutics. In a broad sense, translational medicine bridges across the discovery, development, regulation, and utilization spectrum. Research may appear as Full Articles, Brief Reports, Commentaries, Phase Forwards (clinical trials), Reviews, or Tutorials. CTS also includes invited didactic content that covers the connections between clinical pharmacology and translational medicine. Best-in-class methodologies and best practices are also welcomed as Tutorials. These additional features provide context for research articles and facilitate understanding for a wide array of individuals interested in clinical and translational science. CTS welcomes high quality, scientifically sound, original manuscripts focused on clinical pharmacology and translational science, including animal, in vitro, in silico, and clinical studies supporting the breadth of drug discovery, development, regulation and clinical use of both traditional drugs and innovative modalities.
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