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健康寿命和寿命之间的耦合取决于复合干预与遗传背景之间的复杂相互作用。

The coupling between healthspan and lifespan in depends on complex interactions between compound intervention and genetic background.

作者信息

Banse Stephen A, Jackson E Grace, Sedore Christine A, Onken Brian, Hall David, Coleman-Hulbert Anna, Huynh Phu, Garrett Theo, Johnson Erik, Harinath Girish, Inman Delaney, Guo Suzhen, Morshead Mackenzie, Xue Jian, Falkowski Ron, Chen Esteban, Herrera Christopher, Kirsch Allie J, Perez Viviana I, Guo Max, Lithgow Gordon J, Driscoll Monica, Phillips Patrick C

机构信息

Institute of Ecology and Evolution, University of Oregon, Eugene, OR 97403, USA.

Department of Molecular Biology and Biochemistry, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USA.

出版信息

Aging (Albany NY). 2024 Apr 12;16(7):5829-5855. doi: 10.18632/aging.205743.

Abstract

Aging is characterized by declining health that results in decreased cellular resilience and neuromuscular function. The relationship between lifespan and health, and the influence of genetic background on that relationship, has important implications in the development of pharmacological anti-aging interventions. Here we assessed swimming performance as well as survival under thermal and oxidative stress across a nematode genetic diversity test panel to evaluate health effects for three compounds previously studied in the Intervention Testing Program and thought to promote longevity in different ways - NP1 (nitrophenyl piperazine-containing compound 1), propyl gallate, and resveratrol. Overall, we find the relationships among median lifespan, oxidative stress resistance, thermotolerance, and mobility vigor to be complex. We show that oxidative stress resistance and thermotolerance vary with compound intervention, genetic background, and age. The effects of tested compounds on swimming locomotion, in contrast, are largely species-specific. In this study, thermotolerance, but not oxidative stress or swimming ability, correlates with lifespan. Notably, some compounds exert strong impact on some health measures without an equally strong impact on lifespan. Our results demonstrate the importance of assessing health and lifespan across genetic backgrounds in the effort to identify reproducible anti-aging interventions, with data underscoring how personalized treatments might be required to optimize health benefits.

摘要

衰老的特征是健康状况下降,导致细胞弹性和神经肌肉功能降低。寿命与健康之间的关系,以及遗传背景对这种关系的影响,在药理学抗衰老干预措施的开发中具有重要意义。在这里,我们评估了线虫遗传多样性测试组在热应激和氧化应激下的游泳表现以及存活率,以评估三种先前在干预测试项目中研究过的、被认为以不同方式促进长寿的化合物——NP1(含硝基苯基哌嗪的化合物1)、没食子酸丙酯和白藜芦醇——对健康的影响。总体而言,我们发现中位寿命、抗氧化应激能力、耐热性和运动活力之间的关系很复杂。我们表明,抗氧化应激能力和耐热性会因化合物干预、遗传背景和年龄而有所不同。相比之下,受试化合物对游泳运动的影响在很大程度上具有物种特异性。在这项研究中,耐热性与寿命相关,而抗氧化应激能力或游泳能力则不然。值得注意的是,一些化合物对某些健康指标有强烈影响,但对寿命的影响却没有那么大。我们的结果表明,在努力确定可重复的抗衰老干预措施时,评估不同遗传背景下的健康和寿命很重要,数据强调了可能需要个性化治疗来优化健康益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5da8/11042945/2d9280fc1289/aging-16-205743-g001.jpg

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