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Updated: Feb 17, 2026

A RANKL-based Osteoclast Culture Assay of Mouse Bone Marrow to Investigate the Role of mTORC1 in Osteoclast Formation
Published on: March 15, 2018
Circadian rhythms regulate osteoclast recycling through gut microbiota-dependent Th17 cell expansion
Shuo Ni1, Weicong Fu2, Lizong Zhang3
1Department of Orthopedic Surgery and Institute of Microsurgery on Extremities,Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.
None:
The circadian clock coordinates diverse biological processes to maintain physiological function and homeostasis in mammals under the day-night light cycle. Disruption of circadian rhythms impairs immune and metabolic functions and increases susceptibility to various diseases. Here, we demonstrate that long-term rest-phase time-restricted feeding (TRF), which disrupts circadian rhythmicity, induces bone loss and gut microbiota dysbiosis in male mice. Fecal microbiota transplantation (FMT) from circadian-misaligned feeding donors to germ-free recipients increased Th17 cell populations, thereby promoting the fusion of osteomorphs-a recently identified osteoclast precursor-into mature osteoclasts through the RANKL-RANK-OPG signaling pathway. Collectively, our findings identify a gut microbiota-Th17-osteomorph axis as a critical mediator of circadian disruption-induced bone loss, uncovering a previously unrecognized mechanism by which circadian rhythms regulate skeletal homeostasis.
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