衰老
祖细胞
骨不连
细胞生物学
骨愈合
干细胞
生物
分泌物
癌症研究
内分泌学
遗传学
解剖
作者
Nan-Yu Zou,Ran Liu,Mei Huang,Yurui Jiao,Jie Wei,Yangzi Jiang,Wenzhen He,Min Huang,Yi-Li Xu,Ling Liu,Yuchen Sun,Mi Yang,Qi Guo,Yan Huang,Tian Su,Ye Xiao,Weishan Wang,Chao Zeng,Guanghua Lei,Xiang‐Hang Luo,Changjun Li
出处
期刊:Bone research
[Springer Nature]
日期:2024-01-25
卷期号:12 (1)
被引量:7
标识
DOI:10.1038/s41413-023-00309-1
摘要
Abstract Skeletal stem/progenitor cell (SSPC) senescence is a major cause of decreased bone regenerative potential with aging, but the causes of SSPC senescence remain unclear. In this study, we revealed that macrophages in calluses secrete prosenescent factors, including grancalcin (GCA), during aging, which triggers SSPC senescence and impairs fracture healing. Local injection of human rGCA in young mice induced SSPC senescence and delayed fracture repair. Genetic deletion of Gca in monocytes/macrophages was sufficient to rejuvenate fracture repair in aged mice and alleviate SSPC senescence. Mechanistically, GCA binds to the plexin-B2 receptor and activates Arg2-mediated mitochondrial dysfunction, resulting in cellular senescence. Depletion of Plxnb2 in SSPCs impaired fracture healing. Administration of GCA-neutralizing antibody enhanced fracture healing in aged mice. Thus, our study revealed that senescent macrophages within calluses secrete GCA to trigger SSPC secondary senescence, and GCA neutralization represents a promising therapy for nonunion or delayed union in elderly individuals.
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