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Electrospinning of PLA/pearl powder nanofibrous scaffold for bone tissue engineering

机译:用于骨组织工程的PLA /珍珠粉纳米纤维支架的电纺

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摘要

Pearl powder is a natural composite of CaCO3 and organic matter, which is a promising biomaterial for bone tissue engineering. In the present work, pearl powder incorporated polylactic (PLA) nanofibrous scaffold fabricated via electrospinning process to improve the weak biocompatibility and mineralization ability of PLA, was used as support for deposition of hydroxyapatite (HA) and supporting cell culture. Then, the as-prepared scaffolds were well characterized by several assays. Morphology observations showed that pearl powder can homogeneously distribute on the surfaces of nanofibers, and appreciably better hydrophilicity was obtained on a PLA/pearl scaffold than PLA. After a mineralization process, HA particles successfully deposited on the nanofiber, which fully covered the surfaces of PLA/pearl nanofibers, whereas coverage seemed only partial on pristine PLA. An in vitro test illustrated higher cell proliferation and better adhesion morphology of MC3T3s that appeared on the PLA/pearl nanofibrous scaffold. Therefore, electrospinning a PLA/pearl nanofibrous scaffold has superior properties to pristine PLA, and shows potential application in bone tissue engineering.
机译:珍珠粉是CaCO3和有机物的天然复合物,是用于骨组织工程的有前途的生物材料。在目前的工作中,通过静电纺丝工艺制备的掺有珍珠粉的聚乳酸(PLA)纳米纤维支架可改善PLA的弱生物相容性和矿化能力,被用作沉积羟基磷灰石(HA)和支持细胞培养的载体。然后,通过几种测定法很好地表征了所制备的支架。形态学观察表明,珍珠粉可以均匀地分布在纳米纤维的表面上,并且在PLA /珍珠支架上获得的亲水性比PLA好得多。经过矿化过程后,HA颗粒成功沉积在纳米纤维上,该纤维完全覆盖了PLA /珍珠纳米纤维的表面,而覆盖范围似乎只限于原始PLA。体外测试表明,出现在PLA /珍珠纳米纤维支架上的MC3T3具有更高的细胞增殖能力和更好的粘附形态。因此,静电纺丝PLA /珍珠纳米纤维支架比原始PLA具有更好的性能,并显示出在骨组织工程中的潜在应用。

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