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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Novel silicificated PVAc/POSS composite nanofibrous mat via facile electrospinning technique: Potential scaffold for hard tissue engineering
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Novel silicificated PVAc/POSS composite nanofibrous mat via facile electrospinning technique: Potential scaffold for hard tissue engineering

机译:新型硅化的PVAc / POSS复合纳米纤维垫,采用便捷的静电纺丝技术:用于硬组织工程的潜在支架

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This study presents the fabrication of novel porous silicificated PVAc/POSS composite nanofibers by facile electrospinning technique and the interaction of synthesized mats with simulated body fluid (SBF). The physicochemical properties of the electrospun composites were determined by scanning electron microscopy, energy dispersive X-ray spectroscopy, transmission electron microscopy, electron probe micro-analysis, X-ray diffraction and thermogravimetry analysis. To examine the in vitro cytotoxicity, mouse myoblast C2C12 cells were treated with pristine and composite nanofibrous mats and the viability of cells was analyzed by cell counting kit-8 assay at regular time intervals. Our results indicated the enhanced nucleation and the formation of apatite-like structures at the surface of silicificated PVAc/POSS during the incubation of electrospun mats in SBF solution. Cytotoxicity experiments designated that the myoblasts could attach to the composite after being cultured. We observed in the present study that PVAc/POSS nanofibrous mat could support cell adhesion and guide the spreading behavior of myoblasts. We conclude that the new electrospun silicificated PVAc/POSS composite scaffold with unique porous morphology have excellent biocompatibility. Consequently, our investigation results showed that the as-spun porous PVAc/POSS composite nanofibrous scaffold could be a potential substrate for the proliferation and mineralization of osteoblasts, enhancing bone regeneration. The biocomposite mats represent a promising biomaterial to be exploited for various tissue engineering applications such as guided bone regeneration.
机译:这项研究提出了新型的多孔硅化的PVAc / POSS复合纳米纤维的制备,采用了简便的静电纺丝技术以及合成垫与模拟体液(SBF)的相互作用。通过扫描电子显微镜,能量色散X射线光谱,透射电子显微镜,电子探针显微分析,X射线衍射和热重分析来确定电纺复合材料的理化性质。为了检查体外细胞毒性,用原始的和复合的纳米纤维垫处理小鼠成肌细胞C2C12细胞,并在固定的时间间隔通过cell count kit-8分析细胞的活力。我们的结果表明,在SBF溶液中孵育电纺毡时,硅化的PVAc / POSS表面的形核增强和磷灰石样结构的形成。细胞毒性实验表明,成肌细胞在培养后可以附着在复合材料上。我们在本研究中观察到,PVAc / POSS纳米纤维垫可以支持细胞粘附并指导成肌细胞的扩散行为。我们得出的结论是,具有独特的多孔形态的新型电纺硅化PVAc / POSS复合支架具有出色的生物相容性。因此,我们的研究结果表明,初生多孔PVAc / POSS复合纳米纤维支架可能是成骨细胞增殖和矿化,增强骨再生的潜在基质。生物复合垫是一种有前途的生物材料,可用于各种组织工程应用,例如引导性骨再生。

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