Mechanical force-activated CD109 on periodontal ligament stem cells governs osteogenesis and osteoclast to promote alveolar bone remodeling

牙周膜干细胞 破骨细胞 牙周纤维 骨重建 细胞生物学 牙槽 干细胞 化学 旁分泌信号 生物 医学 内科学 体外 牙科 碱性磷酸酶 受体 生物化学
作者
Yang Li,Yi Li,Chao Liu,Xinyi Yu,Ziqi Gan,Lin Xiang,Jianfei Zheng,Bo Meng,Rongcheng Yu,Xin Chen,Xiaoxing Kou,Chengying Yang,Tingting Ai
出处
期刊:Stem Cells Translational Medicine [Wiley]
标识
DOI:10.1093/stcltm/szae035
摘要

Abstract Mechanical force-mediated bone remodeling is crucial for various physiological and pathological processes involving multiple factors, including stem cells and the immune response. However, it remains unclear how stem cells respond to mechanical stimuli to modulate the immune microenvironment and subsequent bone remodeling. Here, we found that mechanical force induced increased expression of CD109 on periodontal ligament stem cells (PDLSCs) in vitro and in periodontal tissues from the force-induced tooth movement rat model in vivo, accompanied by activated alveolar bone remodeling. Under mechanical force stimulation, CD109 suppressed the osteogenesis capacity of PDLSCs through the JAK/STAT3 signaling pathway, whereas it promoted PDLSC-induced osteoclast formation and M1 macrophage polarization through paracrine. Moreover, inhibition of CD109 in vivo by lentivirus-shRNA injection increased the osteogenic activity and bone density in periodontal tissues. On the contrary, it led to decreased osteoclast numbers and pro-inflammatory factor secretion in periodontal tissues and reduced tooth movement. Mechanistically, mechanical force-enhanced CD109 expression via the repression of miR-340-5p. Our findings uncover a CD109-mediated mechanical force response machinery on PDLSCs, which contributes to regulating the immune microenvironment and alveolar bone remodeling during tooth movement.
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