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转化老年科学:强调功能以实现最佳长寿。

Translational geroscience: emphasizing function to achieve optimal longevity.

作者信息

Seals Douglas R, Melov Simon

机构信息

Department of Integrative Physiology, University of Colorado Boulder, Boulder, CO 80309, USA.

Buck Institute for Research on Aging, Novato, CA 94945, USA.

出版信息

Aging (Albany NY). 2014 Sep;6(9):718-30. doi: 10.18632/aging.100694.

Abstract

Among individuals, biological aging leads to cellular and organismal dysfunction and an increased risk of chronic degenerative diseases and disability. This sequence of events in combination with the projected increases in the number of older adults will result in a worldwide healthcare burden with dire consequences. Superimposed on this setting are the adults now reaching traditional retirement ages--the baby boomers--a group that wishes to remain active, productive and physically and cognitively fit as they grow older. Together, these conditions are producing an unprecedented demand for increased healthspan or what might be termed "optimal longevity"-to live long, but well. To meet this demand, investigators with interests in the biological aspects of aging from model organisms to human epidemiology (population aging) must work together within an interactive process that we describe astranslational geroscience. An essential goal of this new investigational platform should be the optimization and preservation of physiological function throughout the lifespan, including integrative physical and cognitive function, which would serve to increase healthspan, compress morbidity and disability into a shorter period of late-life, and help achieve optimal longevity. To most effectively utilize this new approach, we must rethink how investigators and administrators working at different levels of the translational research continuum communicate and collaborate with each other, how best to train the next generation of scientists in this new field, and how contemporary biological-biomedical aging research should be organized and funded.

摘要

在个体中,生物衰老会导致细胞和机体功能障碍,并增加患慢性退行性疾病和残疾的风险。这一系列事件,再加上预计老年人口数量的增加,将在全球范围内造成医疗负担,带来可怕的后果。在这种情况下,现在达到传统退休年龄的成年人——婴儿潮一代——也加入进来,这是一群希望随着年龄增长保持活跃、富有成效以及身体和认知健康的人。这些情况共同产生了对延长健康寿命(或可称为“最佳寿命”)的前所未有的需求,即活得长久且健康。为了满足这一需求,从模式生物到人类流行病学(人口老龄化)等对衰老生物学方面感兴趣的研究人员必须在一个我们称之为转化老年科学的互动过程中共同努力。这个新的研究平台的一个基本目标应该是在整个生命周期中优化和保持生理功能,包括综合的身体和认知功能,这将有助于延长健康寿命,将发病率和残疾压缩到更短的晚年时期,并有助于实现最佳寿命。为了最有效地利用这种新方法,我们必须重新思考在转化研究连续体不同层面工作的研究人员和管理人员如何相互沟通与合作,如何最好地培养这一新领域的下一代科学家,以及当代生物 - 生物医学衰老研究应如何组织和资助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e9a/4221919/4abb74e6e13c/aging-06-718-g001.jpg

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