Wang Qingyi, Hou Tongyao, Wang Qiwen, He Jiamin, Wang Lan, Si Jianmin, Chen Shujie
Department of Gastroenterology, Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou, 310016, Zhejiang Province, China.
Institute of Gastroenterology, Zhejiang University, Hangzhou, 310016, Zhejiang Province, China.
Biogerontology. 2023 Jun;24(3):303-328. doi: 10.1007/s10522-022-09997-4. Epub 2022 Nov 23.
With the increasing number of aged population and growing burden of healthy aging demands, a rational standard for evaluation aging is in urgent need. The advancement of medical testing technology and the prospering of artificial intelligence make it possible to evaluate the biological status of aging from a more comprehensive view. In this review, we introduced common aging biomarkers and concluded several famous aging clocks. Aging biomarkers reflect changes in the organism at a molecular or cellular level over time while aging clocks tend to be more of a generalization of the overall state of the organism. We expect to construct a framework for aging evaluation measurement from both micro and macro perspectives. Especially, population-specific aging clocks and multi-omics aging clocks may better fit the demands to evaluate aging in a comprehensive and multidimensional manner and make a detailed classification to represent different aging rates at tissue/organ levels. This framework will promisingly provide a crucial basis for disease diagnosis and intervention assessment in geroscience.
随着老年人口数量的增加以及健康老龄化需求负担的加重,迫切需要一个合理的衰老评估标准。医学检测技术的进步和人工智能的蓬勃发展使得从更全面的角度评估衰老的生物学状态成为可能。在这篇综述中,我们介绍了常见的衰老生物标志物,并总结了几种著名的衰老时钟。衰老生物标志物反映了生物体在分子或细胞水平上随时间的变化,而衰老时钟则更倾向于对生物体整体状态的概括。我们期望从微观和宏观两个角度构建一个衰老评估测量框架。特别是,针对特定人群的衰老时钟和多组学衰老时钟可能更能满足以全面和多维方式评估衰老的需求,并进行详细分类以代表组织/器官水平上不同的衰老速率。这个框架有望为老年科学中的疾病诊断和干预评估提供关键依据。