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产色氨酸细菌可缓解骨质疏松症和肠道功能障碍。

Tryptophan-producing bacteria to mitigate osteoporosis and intestinal dysfunction.

作者信息

Tian Bo, Wang Heng, Zhang Yue, Lv Jinmin, Li Dongxiao, Zhou Chenmeng, Xu Jialu, Ni Yichao, Wu Bingbing, Zhang Mingchao, Dai Huaxing, Xu Fang, Bai Jinyu, Wang Chao, Zhou Xiaozhong

机构信息

Department of Orthopedics, The Second Affiliated Hospital of Soochow University, Suzhou, Jiangsu, 215004, China.

Laboratory for Biomaterial and Immunoengineering, Institute of Functional Nano & Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-based Functional Materials and Devices, Soochow University, Suzhou, Jiangsu, 215123, China.

出版信息

Bioact Mater. 2025 May 16;51:293-305. doi: 10.1016/j.bioactmat.2025.05.013. eCollection 2025 Sep.

Abstract

The relationship between gut microbiota and host health and disease is intricate, with microbiota-derived metabolites playing a crucial role in the gut-organ axis. In this study, we observe significantly decreased levels of microbial metabolites, particularly tryptophan derivatives in osteoporosis mice. Loss of tryptophan induced intestinal epithelial barrier dysfunction which compromised intestinal barrier integrity, leading to bone inflammatory responses and pathological osteoporosis. Through supplementation of tryptophan-producing bacteria, we effectively repair damaged intestinal barriers in colitis mice and mitigate bone loss, indicating the link between chronic colitis and osteoporosis. This approach offers a promising synthetic biology-based strategy to improve osteoporosis therapy by targeting gut tryptophan. This intervention also alleviates age-related osteoporosis in an aged mouse model, providing a potential therapeutic avenue for combating osteoporosis, a disease of growing concern in aging populations.

摘要

肠道微生物群与宿主健康和疾病之间的关系错综复杂,微生物衍生的代谢产物在肠-器官轴中起着关键作用。在本研究中,我们观察到骨质疏松小鼠体内微生物代谢产物水平显著降低,尤其是色氨酸衍生物。色氨酸的缺失导致肠道上皮屏障功能障碍,损害了肠道屏障的完整性,进而引发骨炎症反应和病理性骨质疏松。通过补充产色氨酸的细菌,我们有效修复了结肠炎小鼠受损的肠道屏障,并减轻了骨质流失,这表明慢性结肠炎与骨质疏松之间存在联系。这种方法提供了一种基于合成生物学的、有前景的策略,通过靶向肠道色氨酸来改善骨质疏松治疗。这种干预措施还减轻了老年小鼠模型中与年龄相关的骨质疏松,为对抗骨质疏松提供了一条潜在的治疗途径,骨质疏松是老龄化人群中日益受到关注的疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94d7/12145525/bffdf241ddb2/ga1.jpg

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