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The Influence of Braiding Angle Variation in Braided-Twisted Fiber Scaffold Based Poly L-Lactic Acid for Anterior Cruciate Ligament Reconstruction Application

机译:编织角变化在编织扭纤维支架基聚L-乳酸中的对曲韧带重建应用的影响

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Anterior Cruciatum Ligament (ACL) injury may cause other tissue injuries and degenerative joint diseases, rendering major surgery compulsory. The ACL substitutions from patient's other tissue (autograft), from cadaver (allograft), or from other species (xenograft) still cause problems like donor morbidity, reduction of mechanical strength in cryopreservation period, and the risk of transgenic infection. Tissue engineering approach is the proposed solution. For this, synthetic ligament scaffold is needed. Electrospinning is a method to produce porous scaffolds made of polymers. In this study, filaments were produced from electrospinning poly l-lactic acid. The filaments were then twisted with 60° angle to the horizontal to make a yarn. Subsequently, the yarns were braided with the variation of braiding angle 40°, 60° and 80°. The characterization on the scaffold includes degradation rate, porosity, tensile strength, and cytotoxicity. It was found that larger braiding angle gave higher degradation rate, bigger pore size, and lower mechanical strength. For cytotoxicity, in terms of pore size and percentage of living cell, scaffold with braiding angle of 80° also showed the optimum result.
机译:前束韧带(ACL)损伤可能导致其他组织损伤和退行性关节疾病,呈现主要手术强制性。来自患者其他组织(自体移植物)的ACL取代,来自尸体(同种异体移植物)或来自其他物种(异种移植物)仍然导致供体发病率的问题,冷冻保存期间的机械强度降低,以及转基因感染的风险。组织工程方法是所提出的解决方案。为此,需要合成韧带支架。静电纺丝是生产由聚合物制成的多孔支架的方法。在该研究中,由静电纺丝聚L-乳酸产生细丝。然后用60°角绞合到水平的长丝以制造纱线。随后,将纱线编写着编织角40°,60°和80°的变化。支架上的表征包括降解速率,孔隙率,拉伸强度和细胞毒性。发现较大的编织角度具有更高的降解速率,更大的孔径和更低的机械强度。对于细胞毒性,就孔径和活细胞的百分比而言,具有80°的编织角的支架也显示出最佳结果。

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