Metagenomic analysis revealing links between age, gut microbiota and bone loss in Chinese adults.

Yufeng Li, Zhun Shi, Xiuying Zhang, Huahui Ren, Hongyi Ji, Fangming Yang, Zuodi Fu, Xiangshuang Kong, Xiaoguang Cheng, Junhua Li, Kui Wu, Yiyi Zhong, Huanzi Zhong, Linong Ji
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Abstract

Accumulating evidence has linked gut microbiota to bone health. However, investigations into the impacts of aging, gut microbiota, and their interactions in the development of osteoporosis remain inconclusive. We employed quantitative computed tomography to measure lumbar bone mass density (BMD) and analyzed shotgun metagenomic data in 684 Chinese adults. Our analyses revealed significant positive associations between BMD and abundances of multiple Lachnospiraceae species, including Lachnospira eligens, Blautia wexlerae, and Roseburia hominis, as well as pathways involved in L-arginine biosynthesis and butyrate production-independent of age, diet habits, and lifestyles. Moreover, we demonstrated that individuals with enterotype Bacteroides exhibited a more pronounced age-related decline in BMD compared to those with enterotype Prevotella, a pattern we validated in an independent cohort. Our findings offer valuable insights into BMD-related gut microbial features and interactions between aging, gut microbiota, and bone loss, opening potential avenues for microbiota-based prevention and treatment strategies for osteoporosis.

宏基因组分析揭示了中国成年人年龄、肠道微生物群和骨质流失之间的联系。
越来越多的证据表明,肠道微生物群与骨骼健康有关。然而,关于衰老、肠道菌群及其相互作用在骨质疏松症发展中的影响的研究仍没有定论。我们采用定量计算机断层扫描测量了684名中国成年人的腰椎骨密度(BMD),并分析了霰弹枪宏基因组数据。我们的分析显示,骨密度与多种毛螺科物种(包括Lachnospira eligens、Blautia weexlerae和Roseburia hominis)的丰富度以及参与l -精氨酸生物合成和丁酸盐生产的途径之间存在显著的正相关,且与年龄、饮食习惯和生活方式无关。此外,我们证明,与肠道型普氏菌相比,肠道型拟杆菌的个体表现出更明显的与年龄相关的骨密度下降,我们在一个独立的队列中验证了这一模式。我们的研究结果为bmd相关的肠道微生物特征以及衰老、肠道微生物群和骨质流失之间的相互作用提供了有价值的见解,为基于微生物群的骨质疏松症预防和治疗策略开辟了潜在的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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