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A novel tissue engineering electrospun-PLGA for potential application in tendon repair

机译:一种新颖的组织工程电纺PLGA,有望在肌腱修复中应用

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The treatment of the rupture tendon is still an obstacle in respect of suture method. Therefore, such shortcoming in repairing fracture tendons could be overcome through tissue engineering approaches. The aim of present study is to investigate the influence of processing parameters on PLGA scaffold morphology and fiber diameters and the effect of the tendon fibroblast with the obtained novel tissue engineering electrospun-PLGA. The nanofiber scaffold was produced via electrospinning. The result shows that the nanofiber diameter and morphology could be controlled under different processing parameters. The Achilles tendon fibroblasts exhibit enough cell viability and were attached with spindle shape on the PLGA nanofiber scaffold. Therefore, PLGA nanofiber scaffold have the potential for Achilles tendon repair.
机译:就缝合方法而言,断裂肌腱的治疗仍然是一个障碍。因此,通过组织工程方法可以克服这种修复骨折腱的缺点。本研究的目的是研究工艺参数对PLGA支架形态和纤维直径的影响以及所获得的新型组织工程电纺PLGA对肌腱成纤维细胞的影响。纳米纤维支架是通过静电纺丝生产的。结果表明,可以在不同的工艺参数下控制纳米纤维的直径和形貌。阿基里斯腱成纤维细胞表现出足够的细胞活力,并以纺锤形附着在PLGA纳米纤维支架上。因此,PLGA纳米纤维支架具有修复跟腱的潜力。

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