骨吸收
兰克尔
破骨细胞
骨重建
内分泌学
内科学
骨髓
吸收
脂肪生成
成骨细胞
化学
生物
医学
脂肪组织
体外
受体
激活剂(遗传学)
生物化学
作者
Jiawei Lu,Qi He,Huan Wang,Lutian Yao,Michael P. Duffy,Hanli Guo,Corben Braun,Yilu Zhou,Qiushi Liang,Yuewei Lin,Shovik Bandyopadhyay,Kai Tan,Yongwon Choi,X. Sherry Liu,Ling Qin
出处
期刊:Bone research
[Springer Nature]
日期:2025-03-18
卷期号:13 (1): 39-39
被引量:5
标识
DOI:10.1038/s41413-025-00405-4
摘要
Abstract Bone resorption by osteoclasts is a critical step in bone remodeling, a process important for maintaining bone homeostasis and repairing injured bone. We previously identified a bone marrow mesenchymal subpopulation, marrow adipogenic lineage precursors (MALPs), and showed that its production of RANKL stimulates bone resorption in young mice using Adipoq-Cre . To exclude developmental defects and to investigate the role of MALPs-derived RANKL in adult bone, we generated inducible reporter mice ( Adipoq-CreER Tomato ) and RANKL deficient mice ( Adipoq-CreER RANKLflox/flox, iCKO ). Single cell-RNA sequencing data analysis and lineage tracing revealed that Adipoq + cells contain not only MALPs but also some mesenchymal progenitors capable of osteogenic differentiation. In situ hybridization showed that RANKL mRNA is only detected in MALPs, but not in osteogenic cells. RANKL deficiency in MALPs induced at 3 months of age rapidly increased trabecular bone mass in long bones as well as vertebrae due to diminished bone resorption but had no effect on the cortical bone. Ovariectomy (OVX) induced trabecular bone loss at both sites. RANKL depletion either before OVX or at 6 weeks post OVX protected and restored trabecular bone mass. Furthermore, bone healing after drill-hole injury was delayed in iCKO mice. Together, our findings demonstrate that MALPs play a dominant role in controlling trabecular bone resorption and that RANKL from MALPs is essential for trabecular bone turnover in adult bone homeostasis, postmenopausal bone loss, and injury repair.
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