Macrophage MSR1 promotes BMSC osteogenic differentiation and M2-like polarization by activating PI3K/AKT/GSK3β/β-catenin pathway

巨噬细胞MSR1通过激活PI3K/AKT/GSK3β/β-catenin通路促进BMSC成骨分化和M2样极化

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作者:Shu-Jie Zhao, Fan-Qi Kong, Jian Jie, Qing Li, Hao Liu, An-Di Xu, Ya-Qing Yang, Bin Jiang, Dong-Dong Wang, Zhong-Qiu Zhou, Peng-Yu Tang, Jian Chen, Qian Wang, Zheng Zhou, Qi Chen, Guo-Yong Yin, Han-Wen Zhang, Jin Fan

Conclusion

Our findings revealed a previously unrecognized function of MSR1 in macrophages during fracture repair. Targeting MSR1 might, therefore, be a new therapeutic strategy for fracture repair.

Methods

The tibial monocortical defect model was employed to determine the critical role of macrophage scavenger receptor 1 (MSR1) during intramembranous ossification (IO) in vivo. The potential functions and mechanisms of MSR1 were explored in a co-culture system of bone marrow-derived macrophages (BMDMs), RAW264.7 cells, and BMSCs using qPCR, Western blotting, immunofluorescence, and RNA sequencing.

Results

In this study, using the tibial monocortical defect model, we observed delayed IO in MSR1 knockout (KO) mice compared to MSR1 wild-type (WT) mice. Furthermore, macrophage MSR1 mediated PI3K/AKT/GSK3β/β-catenin signaling increased ability to promote osteogenic differentiation of BMSCs in the co-culture system. We also identified proliferator-activated receptor gamma coactivator 1-alpha (PGC1α) as the target gene for macrophage MSR1-activated PI3K/AKT/GSK3β/β-catenin pathway in the co-culture system that facilitated M2-like polarization by enhancing mitochondrial oxidative phosphorylation.

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