首页> 美国卫生研究院文献>Stem Cells International >Electrospun Gelatin/β-TCP Composite Nanofibers Enhance Osteogenic Differentiation of BMSCs and In Vivo Bone Formation by Activating Ca2+-Sensing Receptor Signaling
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Electrospun Gelatin/β-TCP Composite Nanofibers Enhance Osteogenic Differentiation of BMSCs and In Vivo Bone Formation by Activating Ca2+-Sensing Receptor Signaling

机译:明胶/β-TCP复合纳米纤维通过激活Ca2 +受体信号传导增强BMSCs成骨分化和体内骨形成。

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摘要

Calcium phosphate- (CaP-) based composite scaffolds have been used extensively for the bone regeneration in bone tissue engineering. Previously, we developed a biomimetic composite nanofibrous membrane of gelatin/β-tricalcium phosphate (TCP) and confirmed their biological activity in vitro and bone regeneration in vivo. However, how these composite nanofibers promote the osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs) is unknown. Here, gelatin/β-TCP composite nanofibers were fabricated by incorporating 20 wt% β-TCP nanoparticles into electrospun gelatin nanofibers. Electron microscopy showed that the composite β-TCP nanofibers had a nonwoven structure with a porous network and a rough surface. Spectral analyses confirmed the presence and chemical stability of the β-TCP and gelatin components. Compared with pure gelatin nanofibers, gelatin/β-TCP composite nanofibers caused increased cell attachment, proliferation, alkaline phosphatase activity, and osteogenic gene expression in rat BMSCs. Interestingly, the expression level of the calcium-sensing receptor (CaSR) was significantly higher on the composite nanofibrous scaffolds than on pure gelatin. For rat calvarial critical sized defects, more extensive osteogenesis and neovascularization occurred in the composite scaffolds group compared with the gelatin group. Thus, gelatin/β-TCP composite scaffolds promote osteogenic differentiation of BMSCs in vitro and bone regeneration in vivo by activating Ca2+-sensing receptor signaling.
机译:基于磷酸钙(CaP)的复合支架已广泛用于骨组织工程中的骨再生。以前,我们开发了明胶/β-磷酸三钙(TCP)的仿生复合纳米纤维膜,并证实了它们的体外生物活性和体内骨再生。然而,这些复合纳米纤维如何促进骨髓间充质干细胞(BMSCs)的成骨分化尚不清楚。在这里,明胶/β-TCP复合纳米纤维是通过将20%(重量)的β-TCP纳米颗粒掺入电纺明胶纳米纤维中制成的。电子显微镜观察表明,复合β-TCP纳米纤维为无纺布结构,具有多孔网络和粗糙表面。光谱分析证实了β-TCP和明胶成分的存在及其化学稳定性。与纯明胶纳米纤维相比,明胶/β-TCP复合纳米纤维引起大鼠BMSCs细胞附着,增殖,碱性磷酸酶活性和成骨基因表达增加。有趣的是,复合纳米纤维支架上的钙敏感受体(CaSR)的表达水平明显高于纯明胶。对于大鼠颅骨临界大小的缺损,与明胶组相比,复合支架组发生了更广泛的成骨和新血管形成。因此,明胶/β-TCP复合支架通过激活Ca 2 + 传感受体信号传导,促进BMSCs的成骨分化和体内骨再生。

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