失调
肠道菌群
骨质疏松症
代谢组学
内科学
生物
微生物群
生理学
医学
生物信息学
免疫学
作者
Chu-wen Ling,Zelei Miao,Mian-li Xiao,Hongwei Zhou,Zengliang Jiang,Yuanqing Fu,Feng Xiong,Luo-Shi-Yuan Zuo,Yuping Liu,Yanyan Wu,Lipeng Jing,Hongli Dong,Gengdong Chen,Ding Ding,Cheng Wang,Fangfang Zeng,Huilian Zhu,Yan He,Ju‐Sheng Zheng,Yu‐Ming Chen
标识
DOI:10.1210/clinem/dgab492
摘要
Several small studies have suggested that the gut microbiome might influence osteoporosis, but there is little evidence from human metabolomics studies to explain this association.This study examined the association of gut microbiome dysbiosis with osteoporosis and explored the potential pathways through which this association occurs using fecal and serum metabolomics.We analyzed the composition of the gut microbiota by 16S rRNA profiling and bone mineral density using dual-energy X-ray absorptiometry in 1776 community-based adults. Targeted metabolomics in feces (15 categories) and serum (12 categories) were further analyzed in 971 participants using ultra-high-performance liquid chromatography coupled to tandem mass spectrometry.This study showed that osteoporosis was related to the beta diversity, taxonomy, and functional composition of the gut microbiota. The relative abundance of Actinobacillus, Blautia, Oscillospira, Bacteroides, and Phascolarctobacterium was positively associated with osteoporosis. However, Veillonellaceae other, Collinsella, and Ruminococcaceae other were inversely associated with the presence of osteoporosis. The association between microbiota biomarkers and osteoporosis was related to levels of peptidases and transcription machinery in microbial function. Fecal and serum metabolomics analyses suggested that tyrosine and tryptophan metabolism and valine, leucine, and isoleucine degradation were significantly linked to the identified microbiota biomarkers and to osteoporosis, respectively.This large population-based study provided robust evidence connecting gut dysbiosis, fecal metabolomics, and serum metabolomics with osteoporosis. Our results suggest that gut dysbiosis and amino acid metabolism could be targets for intervention in osteoporosis.
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