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首页> 外文期刊>CERAMICS INTERNATIONAL >Biological interactions of muscle precursor C2C12 cells with biomimetic nano-hydroxyapatite/poly(lactide-co-glycolide) scaffoldings
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Biological interactions of muscle precursor C2C12 cells with biomimetic nano-hydroxyapatite/poly(lactide-co-glycolide) scaffoldings

机译:肌肉前体C2C12细胞与仿生纳米羟基磷灰石/聚(丙交酯-共-乙交酯)支架的生物相互作用

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Nowadays considerable interest has been generated in using hybrid biomimetic bioceramics for engineering diverse hard and soft tissues. C2C12 cell line is an experimental model to study the cell proliferation and differentiation. The present investigation was undertaken to study for the first time the biological interactions of muscle precursor C2C12 cells on the biomimetic nano-hydroxyapatite/poly(lactide-co-glycolide) scaffolding surfaces. The nanofibrous scaffoldings incorporated with hydroxyapatite (HAP) particles was synthesized by facile sol-gel elecrospinning for seeding and growth of muscle cells. The as-spun hybrid nanofibers were characterized by scanning electron microscopy, transmission electron microscopy equipped with energy dispersive X-ray device and X-ray diffraction pattern. Thermal stability of the composite scaffolds was also determined by thermogravimetric analysis. The cytobiocompatibility of mouse C2C12 myoblasts on the designed matrix was examined by cell counting assay using CCK-8 kit. The experimental results revealed that incorporation of HAP in polymer affected both the morphology and size of polylactide-co-glycolide nanofibers. The CCK-8 assay results and SEM observation demonstrated that composite nanofibrous scaffolds are non-cytotoxic to C2C12 cell culture and were found best for cell attachment and proliferation. Conclusively, biomimetic scaffolds with homogeneously distributed HAP nanoparticles were successfully fabricated by straightforward electrospinning approach. The results of this study clearly suggest that the HAP/poly(lactide-co-glycolide) scaffoldings will be a promising material for the growth of C2C12 cells and thus helps in the development of novel therapeutic systems for skeletal muscle diseases in future.
机译:如今,使用混合仿生生物陶瓷来工程化各种硬组织和软组织已经引起了相当大的兴趣。 C2C12细胞系是研究细胞增殖和分化的实验模型。进行本研究以首次研究在仿生纳米羟基磷灰石/聚(丙交酯-乙交酯)支架表面上肌肉前体C2C12细胞的生物学相互作用。掺入羟基磷灰石(HAP)颗粒的纳米纤维支架是通过容易的溶胶-凝胶电纺丝法合成的,用于肌肉细胞的播种和生长。初生杂化纳米纤维通过扫描电子显微镜,配备能量色散X射线装置的透射电子显微镜和X射线衍射图谱进行表征。复合支架的热稳定性也通过热重分析来确定。使用CCK-8试剂盒通过细胞计数测定法检查了小鼠C2C12成肌细胞在设计基质上的细胞生物相容性。实验结果表明,在聚合物中掺入HAP会影响聚丙交酯-共-乙交酯纳米纤维的形态和尺寸。 CCK-8分析结果和SEM观察表明,复合纳米纤维支架对C2C12细胞培养无细胞毒性,被发现最适合细胞附着和增殖。结论是,通过简单的静电纺丝方法成功地制造了具有均匀分布的HAP纳米粒子的仿生支架。这项研究的结果清楚地表明,HAP /聚(丙交酯-共-乙交酯)支架将成为C2C12细胞生长的有前途的材料,从而有助于将来开发新型的骨骼肌疾病治疗系统。

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