Gut microbiota delays aging by regulating the immune, metabolic, and neurological functions of the host. However, current research on novel probiotics with antiaging properties significantly lags, impacting their application in clinical treatments. In this study, metagenomics, culturomics, and probiotic property screening were used to identify Bifidobacterium pseudocatenulatum NCU-08 as a potential probiotic with anti-aging properties. In addition, B.âpseudocatenulatum NCU-08 effectively improved the behavioral characteristics, significantly reduced the levels of the age-related protein β-galactosidase (β-gal) (BP: Mâ=â0.81 vs. 1.13, pâ<â0.05), attenuated neuronal damage in the hippocampus, and improved the composition of the gut microbiota of senescence-accelerated mouse tendency-8 (SAMP8) mice. The targeted metabolomics suggested that L-tryptophan (L-Trp) may be a key substance for B.âpseudocatenulatum NCU-08 to exert anti-aging effects (BP: Mâ=â14878.6âng/mL vs. 5464.99âng/mL, pâ<â0.01). Mechanistically, using the aging model of SAMP8 mice and HT22 mouse hippocampal neuronal cells, it was found that B.âpseudocatenulatum NCU-08 might enter the intestine to regulate L-Trp, and then transport it to the brain. In the brain, L-Trp was metabolized to NAD(+), which activated the Sirt1/P53/P21/Rb signaling pathway, thereby exerting antiaging effects. Interestingly, this antiaging effect was inhibited after the intervention of the Sirt1 inhibitor EX-527. This study is the first to confirm the antiaging properties of NCU-08 isolated from the fecal samples of seven centenarians in Jiangxi Province, providing data support for the future development of probiotic preparations with antiaging effects.
L-Tryptophan Produced by Bifidobacterium pseudocatenulatum NCU-08 Delays Aging in SAMP8 Mice by Activating the Sirt1/P53/P21/Rb Signaling Pathway.
由假链状双歧杆菌 NCU-08 产生的 L-色氨酸通过激活 Sirt1/P53/P21/Rb 信号通路延缓 SAMP8 小鼠的衰老
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作者:Xu Tangchang, Wu Xiaoyun, Zhang Yifei, Cai Yujie, Zhang Xinfeng, Zeng Qingwei, Luo Jie, Wei Jing, Chen Tingtao
| 期刊: | Aging Cell | 影响因子: | 7.100 |
| 时间: | 2025 | 起止号: | 2025 Sep;24(9):e70166 |
| doi: | 10.1111/acel.70166 | 靶点: | P53 |
| 研究方向: | 信号转导 | ||
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