粒体自噬
生物
细胞生物学
长寿
兴奋
线粒体
秀丽隐杆线虫
线粒体生物发生
细胞器生物发生
生物发生
氧化应激
自噬
生物化学
遗传学
基因
细胞凋亡
作者
Evandro Fei Fang,Tyler B. Waltz,Henok Kassahun,Qiping Lu,Jesse S. Kerr,Marya Morevati,Elayne M. Fivenson,Bradley N. Wollman,Krisztina Marosi,Mark A. Wilson,Wendy B. Iser,D. Mark Eckley,Yongqing Zhang,Elin Lehrmann,I. Goldberg,Morten Scheibye‐Knudsen,Mark P. Mattson,Hilde Nilsen,Vilhelm A. Bohr,Kevin G. Becker
摘要
Aging is a major international concern that brings formidable socioeconomic and healthcare challenges. Small molecules capable of improving the health of older individuals are being explored. Small molecules that enhance cellular stress resistance are a promising avenue to alleviate declines seen in human aging. Tomatidine, a natural compound abundant in unripe tomatoes, inhibits age-related skeletal muscle atrophy in mice. Here we show that tomatidine extends lifespan and healthspan in C. elegans, an animal model of aging which shares many major longevity pathways with mammals. Tomatidine improves many C. elegans behaviors related to healthspan and muscle health, including increased pharyngeal pumping, swimming movement, and reduced percentage of severely damaged muscle cells. Microarray, imaging, and behavioral analyses reveal that tomatidine maintains mitochondrial homeostasis by modulating mitochondrial biogenesis and PINK-1/DCT-1-dependent mitophagy. Mechanistically, tomatidine induces mitochondrial hormesis by mildly inducing ROS production, which in turn activates the SKN-1/Nrf2 pathway and possibly other cellular antioxidant response pathways, followed by increased mitophagy. This mechanism occurs in C. elegans, primary rat neurons, and human cells. Our data suggest that tomatidine may delay some physiological aspects of aging, and points to new approaches for pharmacological interventions for diseases of aging.
科研通智能强力驱动
Strongly Powered by AbleSci AI