State Key Laboratory of Oral Diseases.
National Center for Stomatology.
JCI Insight. 2024 Oct 8;9(19):e182524. doi: 10.1172/jci.insight.182524.
Bone contains multiple pools of skeletal stem/progenitor cells (SSPCs), and SSPCs in periosteal compartments are known to exhibit higher regenerative potential than those in BM and endosteal compartments. However, the in vivo identity and hierarchical relationships of periosteal SSPCs (P-SSPCs) remain unclear due to a lack of reliable markers to distinguish BM SSPCs and P-SSPCs. Here, we found that periosteal mesenchymal progenitor cells (P-MPs) in periosteum can be identified based on Postn-CreERT2 expression. Postn-expressing periosteal subpopulation produces osteolineage descendants that fuel bones to maintain homeostasis and support regeneration. Notably, Postn+ P-MPs are likely derived from Gli1+ skeletal stem cells (SSCs). Ablation of Postn+ cells results in impairments in homeostatic cortical bone architecture and defects in fracture repair. Genetic deletion of Igf1r in Postn+ cells dampens bone fracture healing. In summary, our study provides a mechanistic understanding of bone regeneration through the regulation of region-specific Postn+ P-MPs.
骨骼包含多个成体干细胞/祖细胞(SSPCs)池,已知骨膜隔室中的 SSPCs 比骨髓和骨内膜隔室中的 SSPCs 具有更高的再生潜力。然而,由于缺乏可靠的标志物来区分骨髓 SSPCs 和骨膜 SSPCs,骨膜 SSPCs(P-SSPCs)的体内特性和层次关系仍不清楚。在这里,我们发现骨膜间充质祖细胞(P-MPs)可以根据 Postn-CreERT2 的表达来鉴定。表达 Postn 的骨膜亚群产生成骨谱系后代,为维持骨稳态和支持再生提供燃料。值得注意的是,Postn+ P-MPs 可能来源于 Gli1+ 骨骼干细胞(SSCs)。Postn+ 细胞的缺失导致稳态皮质骨结构受损和骨折修复缺陷。Postn+ 细胞中 Igf1r 的基因缺失会抑制骨骨折愈合。总之,我们的研究通过调节特定区域的 Postn+ P-MPs,提供了对骨骼再生机制的理解。