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Molecular and physiological manifestations and measurement of aging in humans

机译:人体衰老的分子和生理表现及测量

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Biological aging is associated with a reduction in the reparative and regenerative potential in tissues and organs. This reduction manifests as a decreased physiological reserve in response to stress (termed homeostenosis) and a time‐dependent failure of complex molecular mechanisms that cumulatively create disorder. Aging inevitably occurs with time in all organisms and emerges on a molecular, cellular, organ, and organismal level with genetic, epigenetic, and environmental modulators. Individuals with the same chronological age exhibit differential trajectories of age‐related decline, and it follows that we should assess biological age distinctly from chronological age. In this review, we outline mechanisms of aging with attention to well‐described molecular and cellular hallmarks and discuss physiological changes of aging at the organ‐system level. We suggest methods to measure aging with attention to both molecular biology (e.g., telomere length and epigenetic marks) and physiological function (e.g., lung function and echocardiographic measurements). Finally, we propose a framework to integrate these molecular and physiological data into a composite score that measures biological aging in humans. Understanding the molecular and physiological phenomena that drive the complex and multifactorial processes underlying the variable pace of biological aging in humans will inform how researchers assess and investigate health and disease over the life course. This composite biological age score could be of use to researchers seeking to characterize normal, accelerated, and exceptionally successful aging as well as to assess the effect of interventions aimed at modulating human aging.
机译:生物衰老与组织和器官中修复和再生潜能的降低有关。这种减少表现为对压力的反应(称为顺势性狭窄)的生理储备减少,以及随着时间的推移,复杂的分子机制逐渐失效,累积地造成疾病。在所有生物中,老化不可避免地会随着时间而发生,并且在遗传,表观遗传和环境调节剂的分子,细胞,器官和有机体水平上都会出现。具有相同年龄的个体表现出与年龄相关的下降的不同轨迹,因此,我们应该与年龄年龄区分开来评估生物学年龄。在这篇综述中,我们概述了衰老的机制,并着眼于精心描述的分子和细胞标志,并讨论了器官系统水平上衰老的生理变化。我们建议同时考虑分子生物学(例如端粒长度和表观遗传标记)和生理功能(例如肺功能和超声心动图测量)来测量衰老的方法。最后,我们提出了一个框架,将这些分子和生理数据整合到一个综合评分中,以衡量人类的生物衰老。了解分子和生理现象会推动复杂的多因素过程,这些过程是人类生物衰老进程不断变化的基础,这将为研究人员在生命过程中如何评估和调查健康与疾病提供信息。该综合生物学年龄评分可用于研究人员,以表征正常,加速和异常成功的衰老,以及评估旨在调节人类衰老的干预措施的效果。

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