subsp inhibits bone loss in obese mice modification of the gut microbiota

High-fat diet (HFD)-induced obesity results in bone loss associated with an imbalanced gut microbiota and altered immune status. Probiotics are live microorganisms that are beneficial to the host and are important in maintaining bone health and gut homeostasis. In this study, the probiotic Lactobaci...

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Veröffentlicht in:Food & function 2023-05, Vol.14 (1), p.4522-4538
Hauptverfasser: Song, W, Bai, Y. Y, Hu, J. H, Li, L. L, He, W. W, Liu, C. C, Li, L, Ning, X, Zhu, L. N, Cui, X. L, Chen, B, Wang, T. Y, Su, K. X, Miao, Y. X, Luo, Y. E, Sheng, Q. L, Yue, T. L
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Zusammenfassung:High-fat diet (HFD)-induced obesity results in bone loss associated with an imbalanced gut microbiota and altered immune status. Probiotics are live microorganisms that are beneficial to the host and are important in maintaining bone health and gut homeostasis. In this study, the probiotic Lactobacillus coryniformis subsp . torquens (T3L) was isolated from traditional yak milk cheese produced in Lhasa and showed distinct acid and bile salt resistance as potential probiotics. Our data indicated that T3L not only reversed HFD-induced gut dysbiosis, as indicated by decreased Firmicutes-to-Bacteroidetes ratios but also reduced bone loss. The anti-obesity, microbiome-modulating, and bone-protective effects were transmissible via horizontal faeces transfer from T3L-treated mice to HFD-fed mice. The protective effects of T3L on bone mass were associated with regulatory T (Treg) cell-mediated inhibition of osteoclast differentiation. Our data indicate that T3L is a regulator of the gut microbiota and bone homeostasis in an animal model. High-fat diet (HFD)-induced obesity results in bone loss associated with an imbalanced gut microbiota and altered immune status.
ISSN:2042-6496
2042-650X
DOI:10.1039/d2fo03863c