Bray Molly S, Loos Ruth J F, McCaffery Jeanne M, Ling Charlotte, Franks Paul W, Weinstock George M, Snyder Michael P, Vassy Jason L, Agurs-Collins Tanya
Department of Nutritional Sciences, The University of Texas at Austin, Austin, Texas, USA.
Department of Preventive Medicine, The Charles Bronfman Institute for Personalized Medicine, The Mindich Child Health and Development Institute, The Icahn School of Medicine at Mount Sinai, New York City, New York, USA.
Obesity (Silver Spring). 2016 Jan;24(1):14-22. doi: 10.1002/oby.21381.
Precision medicine utilizes genomic and other data to optimize and personalize treatment. Although more than 2,500 genetic tests are currently available, largely for extreme and/or rare phenotypes, the question remains whether this approach can be used for the treatment of common, complex conditions like obesity, inflammation, and insulin resistance, which underlie a host of metabolic diseases.
This review, developed from a Trans-NIH Conference titled "Genes, Behaviors, and Response to Weight Loss Interventions," provides an overview of the state of genetic and genomic research in the area of weight change and identifies key areas for future research.
Although many loci have been identified that are associated with cross-sectional measures of obesity/body size, relatively little is known regarding the genes/loci that influence dynamic measures of weight change over time. Although successful short-term weight loss has been achieved using many different strategies, sustainable weight loss has proven elusive for many, and there are important gaps in our understanding of energy balance regulation.
Elucidating the molecular basis of variability in weight change has the potential to improve treatment outcomes and inform innovative approaches that can simultaneously take into account information from genomic and other sources in devising individualized treatment plans.
精准医学利用基因组及其他数据来优化治疗并实现个性化治疗。尽管目前有超过2500种基因检测方法,主要用于极端和/或罕见表型,但对于肥胖、炎症和胰岛素抵抗等常见复杂病症(这些病症是众多代谢疾病的基础),这种方法是否可用于治疗仍存在疑问。
本综述源自一场名为“基因、行为与减肥干预反应”的跨 NIH 会议,概述了体重变化领域的基因和基因组研究现状,并确定了未来研究的关键领域。
尽管已确定许多与肥胖/体型横断面测量相关的基因座,但对于影响体重随时间动态变化的基因/基因座了解相对较少。尽管使用多种不同策略已成功实现短期减肥,但对许多人来说,可持续减肥却难以实现,而且我们对能量平衡调节的理解存在重要差距。
阐明体重变化变异性的分子基础有可能改善治疗效果,并为创新方法提供依据,这些方法在制定个性化治疗方案时可同时考虑基因组和其他来源的信息。