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首页> 外文期刊>European review for medical and pharmacological sciences. >MOTS-c accelerates bone fracture healing by stimulating osteogenesis of bone marrow mesenchymal stem cells via positively regulating FOXF1 to activate the TGF-β pathway
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MOTS-c accelerates bone fracture healing by stimulating osteogenesis of bone marrow mesenchymal stem cells via positively regulating FOXF1 to activate the TGF-β pathway

机译:MOTS-c通过积极调节FOXF1激活TGF-β途径,刺激骨髓间充质干细胞的成骨作用,从而促进骨折愈合。

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摘要

OBJECTIVE: To elucidate the function of MOTS-c in accelerating bone fracture healing by inducing BMSCs differentiation into osteoblasts, as well as its potential mechanism. MATERIALS AND METHODS: Primary BMSCs were extracted from rats and induced for osteogenesis. The highest dose of MOTS-c that did not affect BMSCs proliferation was determined by CCK-8 assay. After 7-day osteogenesis, the relative levels of ALP, Bglap, and Runx2 in MOTS-c-treated BMSCs influenced by FOXF1 were examined. ALP staining and alizarin red S staining in BMSCs were performed as well. The interaction between FOXF1 and TGF-β was analyzed by ChIP assay. At last, rescue experiments were performed to uncover the role of FOXF1/TGF-β axis in MOTS-c-induced osteogenesis. RESULTS: 1 μM MOTS-c was the highest dose that did not affect BMSCs proliferation. MOTS-c treatment upregulated the relative levels of ALP, Bglap, and Runx2, and stimulated mineralization ability in BMSCs, which were attenuated by the silence of FOXF1. TGF-β was proved to interact with FOXF1, and its level was positively mediated by FOXF1. The silence of FOXF1 attenuated the accelerated osteogenesis and TGF-β upregulation in BMSCs because of MOTS-c induction, and these trends were further reversed by the overexpression of TGF-β. CONCLUSIONS: MOTS-c treatment markedly induces osteogenesis in BMSCs. During MOTS-c-induced osteogenic progression, the upregulated FOXF1 triggers the activation of TGF-β pathway, thus accelerating bone fracture healing.
机译:目的:阐明MOTS-c通过诱导骨髓间充质干细胞向成骨细胞的分化来促进骨折愈合,并探讨其潜在机制。材料与方法:从大鼠中提取原代骨髓间充质干细胞,诱导其成骨。通过CCK-8测定法确定了不影响BMSCs增殖的最高剂量的MOTS-c。在第7天的成骨作用后,检查了受FOXF1影响的MOTS-c处理的BMSC中ALP,Bglap和Runx2的相对水平。还进行了BMSC中的ALP染色和茜素红S染色。用ChIP分析法分析FOXF1和TGF-β之间的相互作用。最后,进行了拯救实验以揭示FOXF1 /TGF-β轴在MOTS-c诱导的成骨中的作用。结果:1μMMOTS-c是不影响BMSCs增殖的最高剂量。 MOTS-c处理上调了ALP,Bglap和Runx2的相对水平,并刺激了BMSCs的矿化能力,这被FOXF1的沉默减弱了。 TGF-β被证明与FOXF1相互作用,其水平由FOXF1阳性介导。由于MOTS-c的诱导,FOXF1的沉默减弱了BMSCs中加速的成骨作用和TGF-β的上调,并且这些趋势被TGF-β的过表达进一步逆转。结论:MOTS-c治疗可明显诱导骨髓间充质干细胞成骨。在MOTS-c诱导的成骨过程中,上调的FOXF1触发TGF-β途径的激活,从而促进骨折愈合。

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