Fibulin2: a negative regulator of BMSC osteogenic differentiation in infected bone fracture healing

Fibulin2:感染性骨折愈合过程中 BMSC 成骨分化的负调节剂

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作者:Shi-Dan Li, Wei Xing, Shao-Chuan Wang, You-Bin Li, Hao Jiang, Han-Xuan Zheng, Xiao-Ming Li, Jing Yang, De-Bin Guo, Xiao-Yu Xie, Ren-Qing Jiang, Chao Fan, Lei Li, Xiang Xu, Jun Fei

Abstract

Bone fracture remains a common occurrence, with a population-weighted incidence of approximately 3.21 per 1000. In addition, approximately 2% to 50% of patients with skeletal fractures will develop an infection, one of the causes of disordered bone healing. Dysfunction of bone marrow mesenchymal stem cells (BMSCs) plays a key role in disordered bone repair. However, the specific mechanisms underlying BMSC dysfunction caused by bone infection are largely unknown. In this study, we discovered that Fibulin2 expression was upregulated in infected bone tissues and that BMSCs were the source of infection-induced Fibulin2. Importantly, Fibulin2 knockout accelerated mineralized bone formation during skeletal development and inhibited inflammatory bone resorption. We demonstrated that Fibulin2 suppressed BMSC osteogenic differentiation by binding to Notch2 and inactivating the Notch2 signaling pathway. Moreover, Fibulin2 knockdown restored Notch2 pathway activation and promoted BMSC osteogenesis; these outcomes were abolished by DAPT, a Notch inhibitor. Furthermore, transplanted Fibulin2 knockdown BMSCs displayed better bone repair potential in vivo. Altogether, Fibulin2 is a negative regulator of BMSC osteogenic differentiation that inhibits osteogenesis by inactivating the Notch2 signaling pathway in infected bone.

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