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PubMed · 42642521

A geroprotective probiotic and its functional metabolite counteract inflammaging to extend healthspan.

Abstract

The gut microbiome profoundly influences host aging, yet the specific microbes and mechanisms governing divergent aging trajectories remain elusive. In this study, we delineated enterotype-specific gut microbial remodeling during aging and developed a microbiome-based aging clock (MicroAge) to track biological aging trajectories. We identified Bifidobacterium pseudocatenulatum (B. pseudocatenulatum) as a candidate geroprotective species consistently depleted during aging across both sexes and multiple Chinese cohorts. In naturally aged mice, oral B. pseudocatenulatum monotherapy rescued intestinal homeostasis, mitigated multiorgan inflammaging, enhanced cognitive-motor performance and extended healthspan. Mechanistically, we characterized 5-aminovaleric acid betaine (5-AVAB) as a key B. pseudocatenulatum-derived metabolite whose levels decline physiologically in aging humans. 5-AVAB supplementation partially recapitulated a broad spectrum of the systemic benefits observed with B. pseudocatenulatum treatment, including improved cognitive and motor function and suppressed multiorgan inflammaging. Our findings identify the B. pseudocatenulatum-5-AVAB axis as a promising target for microbiome-based interventions to promote healthy aging.

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BibTeXRIS

Xiaoyong Lu, Jun Ping, Zichu Han, Shuo Zhang, Lixiao Liu, Muzhao Xiong, Yanling Fan, Jiaming Li, Xiaoyan Sun, Peng Yang, Kejie Zheng, Zheng-Kai Wang, Jiale Ping, Yu Xiong, Yuesheng Zuo, Min Zhang, Jingyi Li, Qi Wu, Qiaoran Wang, Dan-Dan Gao, Beier Jiang, Shuhui Sun, Shuai Ma, Si Wang, Jing Qu, Yun-Gui Yang, Feng Zhang, Guang-Hui Liu, Weiqi Zhang. 2026-08-25. A geroprotective probiotic and its functional metabolite counteract inflammaging to extend healthspan.. https://doi.org/10.1038/s43587-026-01181-4

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