衰老
细胞衰老
计算机科学
计算生物学
化学
细胞生物学
生物
生物化学
基因
表型
作者
Li Chen,Bangfu Wu,Mo Li,Huimin Chen,Xingzhu Yin,Ying Zhao,Zhenzhen Cui,Fei-Peng Cui,Liangkai Chen,Qianchun Deng,Chao Gao,Ping Yao,Yanyan Li,Yuhan Tang
标识
DOI:10.1038/s41467-025-58188-5
摘要
Accumulated senescent cells during the aging process are a key driver of functional decline and age-related disorders. Here, we identify ganoderic acid A (GAA) as a potent anti-senescent compound with low toxicity and favorable drug properties through high-content screening. GAA, a major natural component of Ganoderma lucidum, possesses broad-spectrum geroprotective activity across various species. In C. elegans, GAA treatment extends lifespan and healthspan as effectively as rapamycin. Administration of GAA also mitigates the accumulation of senescent cells and physiological decline in multiple organs of irradiation-stimulated premature aging mice, natural aged mice, and western diet-induced obese mice. Notably, GAA displays a capability to enhance physical function and adapts to conditional changes in metabolic demand as mice aged. Mechanistically, GAA directly binds to TCOF1 to maintain ribosome homeostasis and thereby alleviate cellular senescence. These findings suggest a feasible senotherapeutic strategy for protecting against cellular senescence and age-related pathologies. Cellular senescence contributes to organismal aging and the onset of age-related diseases. Here the authors identify ganoderic acid A (GAA) as an anti-senescent compound by high-content screening, and report that it increases healthspan in C. elegans and in mice.
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