基因组医学减少烟草和相关疾病:转化为精确预防和治疗

Li-Shiun Chen , Timothy B. Baker , Alex Ramsey , Christopher I. Amos , Laura J. Bierut
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引用次数: 1

摘要

基因组医学可以加强预防和治疗。首先,我们认为基因组学的进步有可能加强对疾病风险的评估,改善预后预测,并指导治疗的开发和应用。多基因风险评分(PRS)的临床应用已成为一个积极研究的领域。从基因组发现到实施的途径是一个迭代的过程。其次,我们提供了两个例子,说明基因组医学如何有潜力解决预防和治疗方面的问题:肺癌筛查和循证烟草治疗都是未充分利用的,也是基因组干预的大好机会。第三,我们通过提供一个模型来评估临床实施的基因组证据、基因组干预的机制和患者对基因组干预的渴望,讨论了开发基因组干预从证据到实施的转化过程。第四,我们在基因组干预方面提出了潜在的挑战,包括在所有不同的人群中都非常需要证据,在治疗算法方面证据很少,在适应动态证据库方面的挑战,以及在现实世界临床环境中的实施挑战。最后,我们得出结论,需要进行研究,以确定与戒烟成功和戒烟治疗效果相关的基因组标志物,从而增强所有不同血统的人的能力。重要的是,基因组数据可用于帮助识别尼古丁成瘾风险升高、戒烟困难、对特定药物治疗反应良好以及与烟草相关的健康问题的患者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genomic medicine to reduce tobacco and related disorders: Translation to precision prevention and treatment

Genomic medicine to reduce tobacco and related disorders: Translation to precision prevention and treatment

Genomic medicine can enhance prevention and treatment. First, we propose that advances in genomics have the potential to enhance assessment of disease risk, improve prognostic predictions, and guide treatment development and application. Clinical implementation of polygenic risk scores (PRSs) has emerged as an area of active research. The pathway from genomic discovery to implementation is an iterative process. Second, we provide examples on how genomic medicine has the potential to solve problems in prevention and treatment using two examples: Lung cancer screening and evidence-based tobacco treatment are both under-utilized and great opportunities for genomic interventions. Third, we discuss the translational process for developing genomic interventions from evidence to implementation by presenting a model to evaluate genomic evidence for clinical implementation, mechanisms of genomic interventions, and patient desire for genomic interventions. Fourth, we present potential challenges in genomic interventions including a great need for evidence in all diverse populations, little evidence on treatment algorithms, challenges in accommodating a dynamic evidence base, and implementation challenges in real world clinical settings. Finally, we conclude that research to identify genomic markers that are associated with smoking cessation success and the efficacy of smoking cessation treatments is needed to empower people of all diverse ancestry. Importantly, genomic data can be used to help identify patients with elevated risk for nicotine addiction, difficulty quitting smoking, favorable response to specific pharmacotherapy, and tobacco-related health problems.

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来源期刊
Addiction neuroscience
Addiction neuroscience Neuroscience (General)
CiteScore
1.30
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审稿时长
118 days
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