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首页> 外文期刊>ACS applied materials & interfaces >MBG-Modified beta-TCP Scaffold Promotes Mesenchymal Stem Cells Adhesion and Osteogenic Differentiation via a FAK/MAPK Signaling Pathway
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MBG-Modified beta-TCP Scaffold Promotes Mesenchymal Stem Cells Adhesion and Osteogenic Differentiation via a FAK/MAPK Signaling Pathway

机译:MBG改性的β-TCP支架通过FAK / MAPK信号通路促进间充质干细胞粘附和骨质发生分化

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The beta-TCP scaffold has been widely used as a bone graft substitute, but the traditional PMMA molding method induced undesirable mechanical strength and poor interconnectivity still have not been addressed until now. In this study, a MBG-based PU foam templating method was developed to fabricate beta-TCP scaffolds with desirable microtopography. The MBG gel, as both binder and modifier, prepared by a modified sol gel method with controlled viscosity is incorporated with beta-TCP powder and thereafter is impregnated into PU foam. The resultant hybrid scaffolds exhibited interconnected macropores (200 - 500 mu m) and distinctive micropores (0.2-1.5 mu m), especially for the TCP/25MBG (with 25 wt % content MBG). As expected, the compression strength of beta-TCP/MBG composite scaffolds was enhanced with increasing MBG content, and TCP/50MBG (with SO wt % content MBG) exhibited almost 100-fold enhancement compared to the pure beta-TCP. Intriguingly, the cell affinity and osteogenic capacity of rBMSCs were also dramatically improved the best on TCP/25MBG. Further investigation found that the subtle, grainy-like microtopography, not the chemical composition, of the TCP/25MBG favored the adsorption of Fn and expression of integrin (alpha 5/beta 1 and further facilitated FA formation and the expression of p-FAK, following activation of the MAPK/ERK signaling pathway and ultimately upregulated expression of osteogenic genes. Further in vivo experiments confirmed the promoted osteogenesis of TCP/25MBG in vivo. The results suggest that such a novel MBG-based PU foam templating method offers new guidance to construct hierarchically porous scaffolds, and the prepared MBG-modified beta-TCP scaffold will have great potential for future use in bone tissue regeneration.
机译:Beta-TCP支架已被广泛用作骨移植替代品,但传统的PMMA成型方法诱导了不希望的机械强度和差距仍未得到较差的互连仍未得到解决。在该研究中,开发了一种基于MBG的PU泡沫模板方法,以制造具有所需的微拷作器的β-TCP支架。通过通过改性溶胶凝胶法制备具有受控粘度制备的粘合剂和改性剂的MBG凝胶与β-TCP粉末结合,然后浸渍到PU泡沫中。所得的杂交支架表现出互连的大孔(200 - 500μm)和独特的微孔(0.2-1.5μm),特别是对于TCP / 25MBG(具有25wt%含量MBG)。如所预期的,随着MBG含量的增加,β-TCP / MBG复合支架的压缩强度增强,与纯β-TCP相比,TCP / 50MBG(具有如此重量%的MBG)表现出几乎100倍的增强。有趣的是,RBMSCs的细胞亲和力和成骨容量也在TCP / 25MBG上显着提高了最佳状态。进一步调查发现,TCP / 25MBG的微妙,颗粒状的微拷贝,不是化学成分,而不是化学成分,有利于FN的吸附和整合蛋白的表达(α5/β1并进一步促进的FA形成和P-Fak的表达,在激活MAPK / ERK信号通路之后并最终上调成骨基因的表达。进一步在体内实验证实了体内TCP / 25MBG的促进骨质发生。结果表明这种新的MBG为基于MBG的PU泡沫模板方法提供了新的指导构建分层多孔支架,制备的MBG改性的β-TCP支架将有很大的潜力,以便在骨组织再生中使用。

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