医学和药学学生对药物基因组学的知识和态度:系统综述和荟萃分析。

IF 2.9 3区 医学 Q2 GENETICS & HEREDITY Pharmacogenomics Journal Pub Date : 2023-05-04 DOI:10.1038/s41397-023-00306-x
Chen Li, Xiaona Su, Qidi Sun, Yi Huang
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引用次数: 0

摘要

药物基因组学(PGx)是分子遗传学的一个快速发展的分支,具有很高的影响治疗学的潜力。这篇综述评估了医学和药学学生对PGx的知识和态度。在电子数据库中进行文献检索,并根据准确的资格标准选择研究。在质量评估后,对研究进行了系统回顾,并对比例进行了荟萃分析,以估计学生的反应率。纳入了15项研究(5509名学生;69%[95%置信区间(CI):60%,77%]女性)。在学生中,28%[95%CI:12,46]具有足够的PGx知识;65%[95%CI:55,75]的人愿意进行PGx测试以进行自己的风险评估;78%[95%CI:71,84]有在未来实践中纳入PGx的意向;32%[95%CI:21,43]对当前课程的PGx组成部分感到满意。年龄、教育项目的高年级以及在PGx教育中花费的更多时间与PGx知识和积极态度呈正相关。
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Knowledge and attitudes of medical and pharmacy students about pharmacogenomics: a systematic review and meta-analysis
Pharmacogenomics (PGx) is rapidly growing branch of molecular genetics with high potentials to influence therapeutics. This review evaluates knowledge and attitudes of medical and pharmacy students about PGx. A literature search was conducted in electronic databases and studies were selected by following precise eligibility criteria. After quality assessment, studies were reviewed systematically, and meta-analyses of proportions were performed to estimate response rates of students. Fifteen studies (5509 students; 69% [95% confidence interval (CI): 60%, 77%] females) were included. Among students, 28% [95%CI: 12, 46] had adequate PGx knowledge; 65% [95%CI: 55, 75] were willing to have PGx test for their own risk assessment; 78% [95%CI: 71, 84] had intention to incorporate PGx in future practice; and 32% [95%CI: 21, 43] were satisfied with current PGx component of curriculum. Age, advanced year of educational program, and more time spent in PGx education were positively associated with PGx knowledge and positive attitudes.
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来源期刊
Pharmacogenomics Journal
Pharmacogenomics Journal 医学-药学
CiteScore
7.20
自引率
0.00%
发文量
35
审稿时长
6-12 weeks
期刊介绍: The Pharmacogenomics Journal is a print and electronic journal, which is dedicated to the rapid publication of original research on pharmacogenomics and its clinical applications. Key areas of coverage include: Personalized medicine Effects of genetic variability on drug toxicity and efficacy Identification and functional characterization of polymorphisms relevant to drug action Pharmacodynamic and pharmacokinetic variations and drug efficacy Integration of new developments in the genome project and proteomics into clinical medicine, pharmacology, and therapeutics Clinical applications of genomic science Identification of novel genomic targets for drug development Potential benefits of pharmacogenomics.
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