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遗传因素对运动的采纳、坚持和肥胖的影响。

Genetic factors in exercise adoption, adherence and obesity.

机构信息

Department of Epidemiology, University of Alabama at Birmingham, Birmingham, Alabama, USA.

出版信息

Obes Rev. 2014 Jan;15(1):29-39. doi: 10.1111/obr.12089. Epub 2013 Sep 15.

Abstract

Physical activity and exercise play critical roles in energy balance. While many interventions targeted at increasing physical activity have demonstrated efficacy in promoting weight loss or maintenance in the short term, long term adherence to such programmes is not frequently observed. Numerous factors have been examined for their ability to predict and/or influence physical activity and exercise adherence. Although physical activity has been demonstrated to have a strong genetic component in both animals and humans, few studies have examined the association between genetic variation and exercise adherence. In this review, we provide a detailed overview of the non-genetic and genetic predictors of physical activity and adherence to exercise. In addition, we report the results of analysis of 26 single nucleotide polymorphisms in six candidate genes examined for association to exercise adherence, duration, intensity and total exercise dose in young adults from the Training Interventions and Genetics of Exercise Response (TIGER) Study. Based on both animal and human research, neural signalling and pleasure/reward systems in the brain may drive in large part the propensity to be physically active and to adhere to an exercise programme. Adherence/compliance research in other fields may inform future investigation of the genetics of exercise adherence.

摘要

身体活动和运动在能量平衡中起着至关重要的作用。虽然许多旨在增加身体活动的干预措施已被证明在短期促进减肥或维持体重方面是有效的,但长期坚持此类计划的情况并不常见。许多因素都被检查了其预测和/或影响身体活动和运动坚持的能力。尽管在动物和人类中都已经证明身体活动具有很强的遗传成分,但很少有研究检查遗传变异与运动坚持之间的关系。在这篇综述中,我们提供了对身体活动和运动坚持的非遗传和遗传预测因素的详细概述。此外,我们还报告了对来自 Training Interventions and Genetics of Exercise Response (TIGER) 研究的年轻人的六个候选基因中的 26 个单核苷酸多态性与运动坚持、持续时间、强度和总运动量之间关联的分析结果。基于动物和人类的研究,大脑中的神经信号和愉悦/奖励系统在很大程度上可能驱动人们积极参与身体活动和坚持运动计划。其他领域的坚持/依从性研究可能为未来的运动坚持遗传学研究提供信息。

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