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Theoretical and Biological Evaluation of the Link between Low Exercise Capacity and Disease Risk

机译:运动量不足与疾病风险之间联系的理论和生物学评估

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摘要

Large-scale epidemiological studies show that low exercise capacity is the highest risk factor for all-cause morbidity and mortality relative to other conditions including diabetes, hypertension, and obesity. This led us to formulate the energy transfer hypothesis (ETH): Variation in capacity for energy transfer is the central mechanistic determinant of the divide between disease and health. As a test of this hypothesis, we predicted that two-way selective breeding of genetically heterogeneous rats for low and high intrinsic treadmill running capacity (a surrogate for energy transfer) would also produce rats that differ for disease risks. The lines are termed low-capacity runners (LCRs) and high-capacity runners (HCRs) and, after 36 generations of selection, they differ by more than eightfold in running capacity. Consistent with the ETH, the LCRs score high for developing disease risks, including metabolic syndrome, neurodegeneration, cognitive impairment, fatty liver disease, susceptibility to cancer, and reduced longevity. The HCRs are resistant to the development of these disease risks. Here we synthe-size ideas on nonequilibrium thermodynamics and evolution from Ilya Prigogine, Hans Krebs, and Peter Mitchell to formulate theoretic explanations for the ETH. First, at every moment in time, the atoms and molecules of organisms are reorganizing to pursue avenues for energy transfer. Second, this continuous organization is navigating in a constantly changing environment such that “strategies” are perpetually in flux and do not leave a simple footprint (evolution). Third, as a consequence, human populations demonstrate a wide variation in capacity for energy transfer that mirrors mechanistically the divide between disease and health.
机译:大规模的流行病学研究表明,相对于其他疾病,包括糖尿病,高血压和肥胖,低运动能力是全因发病和死亡的最高风险因素。这导致我们制定了能量转移假说(ETH):能量转移能力的变化是疾病与健康之间鸿沟的主要机制。作为对该假设的检验,我们预测了具有低内在跑步机和高内在跑步机运行能力(能量传递的替代物)的遗传异质鼠的双向选择育种也会产生患病风险不同的鼠。这些生产线分别称为低容量流道(LCR)和高容量流道(HCR),经过36代的选择,它们的运行能力相差八倍以上。与ETH一致,LCR在发展中的疾病风险(包括代谢综合征,神经退行性疾病,认知障碍,脂肪肝,癌症易感性和寿命降低)方面得分很高。 HCR抵抗这些疾病风险的发展。在这里,我们综合了Ilya Prigogine,Hans Krebs和Peter Mitchell提出的关于非平衡热力学和演化的观点,为ETH制定了理论解释。首先,在每时每刻,生物的原子和分子都在重组,以寻求能量转移的途径。其次,这个连续不断的组织正在不断变化的环境中航行,以使“战略”永远在变化,不会留下简单的足迹(演变)。第三,结果,人类的能量转移能力差异很大,从机械上反映了疾病与健康之间的鸿沟。

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