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Improving the osteogenic efficacy of BMP2 with mechano growth factor by regulating the signaling events in BMP pathway

机译:通过调节BMP途径中的信号传导事件,利用机械生长因子提高BMP2的成骨功效

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Local application of bone morphogenetic protein 2 (BMP2) is known to promote large bone defect healing and BMP2-initiated bone regeneration could be enhanced by an additional mechanical stimulation. The C-terminal 24-a.a. peptide of mechano growth factor (MGF24E), a mechanical-sensitive molecule, has been demonstrated to promote bone healing. Here, we propose a hypothesis that MGF24E could also improve the osteogenic efficacy of BMP2 by regulating the signaling events in the BMP pathway. To confirm the hypothesis, the potentials of MGF24E, BMP2 and BMP2/MGF24E combination treatments on the phosphorylation of Smad 1/5/8, the downstream osteogenesis-related gene expression and osteoblasts mineralization, are investigated with or without the blocking of Smad 5 siRNA. Furthermore, 15-mm rabbit radial bone defects were healed with the cytokine treatments and then evaluated by radiographic examination, histological assessment and immunohistochemical analysis. MGF24E could enhance the BMP2-induced Smad signaling pathway by upregulating the p-Smad protein expression and the downstream osteogenic gene expression. An amount of 5 nM BMP2 in a sub-25 nM concentration of MGF24E medium achieved a higher expression for ALP mRNA and a greater calcium mineral content compared with BMP2 alone. Nevertheless, the inhibition of the MGF24E-regulated BMP pathway could block osteogenesis induced by the dual treatment. In vivo, MGF24E treatment upregulated the endogenous BMP2 expression and the addition of MGF24E into the BMP2 treatment remarkably enhanced the bone mineral density (BMD), the radiographic scores and the histological restoration of the regenerated tissue against BMP2 treatment, suggesting a new strategy for BMP2 in bone defect healing.
机译:已知骨形态发生蛋白2(BMP2)的局部应用可促进大的骨缺损愈合,而BMP2引发的骨再生可通过额外的机械刺激来增强。 C端24-a.a。机械敏感分子机械生长因子(MGF24E)肽已被证明可促进骨愈合。在这里,我们提出一个假设,即MGF24E还可以通过调节BMP途径中的信号传导事件来改善BMP2的成骨功效。为了证实这一假设,研究了在有或没有Smad 5 siRNA阻断的情况下,MGF24E,BMP2和BMP2 / MGF24E联合治疗对Smad 1/5/8磷酸化,下游成骨相关基因表达和成骨细胞矿化的潜力。 。此外,用细胞因子治疗治愈了15毫米兔radial骨的骨缺损,然后通过射线照相检查,组织学评估和免疫组织化学分析对其进行了评估。 MGF24E可通过上调p-Smad蛋白表达和下游成骨基因表达来增强BMP2诱导的Smad信号通路。与单独的BMP2相比,在低于25 nM浓度的MGF24E培养基中加入5 nM BMP2可获得更高的ALP mRNA表达和更高的钙矿物质含量。然而,抑制MGF24E调节的BMP途径可能会阻止双重治疗诱导的成骨作用。在体内,MGF24E治疗上调了内源性BMP2表达,将MGF24E添加到BMP2治疗中显着增强了骨矿物质密度(BMD),放射学评分以及针对BMP2治疗的再生组织的组织学恢复,提示了BMP2的新策略在骨缺损愈合中。

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