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首页> 外文期刊>Scientific reports. >Tendon Fascicle-Inspired Nanofibrous Scaffold of Polylactic acid/Collagen with Enhanced 3D-Structure and Biomechanical Properties
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Tendon Fascicle-Inspired Nanofibrous Scaffold of Polylactic acid/Collagen with Enhanced 3D-Structure and Biomechanical Properties

机译:肌腱纤维束启发的聚乳酸/胶原纳米纤维支架,具有增强的3D结构和生物力学特性

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Surgical treatment of tendon lesions still yields unsatisfactory clinical outcomes. The use of bioresorbable scaffolds represents a way forward to improve tissue repair. Scaffolds for tendon reconstruction should have a structure mimicking that of the natural tendon, while providing adequate mechanical strength and stiffness. In this paper, electrospun nanofibers of two crosslinked PLLA/Collagen blends (PLLA/Coll-75/25, PLLA/Coll-50/50) were developed and then wrapped in bundles, where the nanofibers are predominantly aligned along the bundles. Bundle morphology was assessed via SEM and high-resolution x-ray computed tomography (XCT). The 0.4-micron resolution in XCT demonstrated a biomimetic morphology of the bundles for all compositions, with a predominant nanofiber alignment and some scatter (50–60% were within 12° from the axis of the bundle), similar to the tendon microstructure. Human fibroblasts seeded on the bundles had increased metabolic activity from day 7 to day 21 of culture. The stiffness, strength and toughness of the bundles are comparable to tendon fascicles, both in the as-spun condition and after crosslinking, with moderate loss of mechanical properties after ageing in PBS (7 and 14 days). PLLA/Coll-75/25 has more desirable mechanical properties such as stiffness and ductility, compared to the PLLA/Coll-50/50. This study confirms the potential to bioengineer tendon fascicles with enhanced 3D structure and biomechanical properties.
机译:肌腱病变的外科治疗仍然不能令人满意的临床结果。使用可生物吸收的支架代表了改善组织修复的一种方法。用于肌腱重建的支架应具有模仿天然肌腱的结构,同时提供足够的机械强度和刚度。在本文中,开发了两种交联的PLLA /胶原蛋白共混物(PLLA / Coll-75 / 25,PLLA / Coll-50 / 50)的电纺纳米纤维,然后将其包裹成束,其中纳米纤维主要沿束排列。束形态通过SEM和高分辨率x射线计算机断层扫描(XCT)进行评估。 XCT中的0.4微米分辨率证明了所有组合物的束都具有仿生形态,主要是纳米纤维排列和一些散射(50-60%距束轴12°以内),类似于肌腱的微结构。从培养的第7天到第21天,接种在束上的人成纤维细胞的代谢活性增加。在刚纺状态和交联后,束的刚度,强度和韧性与肌腱束相当,在PBS中老化(7天和14天)后机械性能损失适中。与PLLA / Coll-50 / 50相比,PLLA / Coll-75 / 25具有更理想的机械性能,例如刚度和延展性。这项研究证实了具有增强的3D结构和生物力学特性的生物工程性肌腱束的潜力。

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