首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Electrospun Water-Borne Polyurethane Nanofibrous Membrane as a Barrier for Preventing Postoperative Peritendinous Adhesion
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Electrospun Water-Borne Polyurethane Nanofibrous Membrane as a Barrier for Preventing Postoperative Peritendinous Adhesion

机译:电纺水聚氨酯纳米纤维膜作为防止术后腹膜粘连的屏障

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摘要

Peritendinous adhesion is a major complication after tendon injury and the subsequent repairs or reconstructions. The degree of adhesion can be reduced by the interposition of a membranous barrier between the traumatized tendon and the surrounding tissue. In the present study, electrospun water-borne polyurethane (WPU) nanofibrous membranes (NFMs) were created for use after the reparation or reconstruction of tendons to reduce adhesion. In the electrospinning process, water was employed as the solvent for WPU, and this solvent was ecofriendly and nontoxic. The nanofibrous architecture and pore size of the WPU NFMs were analyzed. Their microporosity (0.78–1.05 µm) blocked the penetration of fibroblasts, which could result in adhesion and scarring around the tendon during healing. The release of WPU mimicked the lubrication effect of the synovial fluid produced by the synovium around the tendon. In vitro cell studies revealed that the WPU NFMs effectively reduced the number of fibroblasts that became attached and that there was no significant cytotoxicity. In vivo studies with the rabbit flexor tendon repair model revealed that WPU NFMs reduced the degree of peritendinous adhesion, as determined using a gross examination; a histological cross section evaluation; and measurements of the range of motion of interphalangeal joints (97.1 ± 14.7 and 79.0 ± 12.4 degrees in proximal and distal interphalangeal joints respectively), of the length of tendon excursion (11.6 ± 1.9 cm), and of the biomechanical properties.
机译:腱鞘损伤及随后的修复或重建后,腹膜粘连是主要并发症。通过在受损伤的肌腱与周围组织之间插入膜状屏障,可以降低粘附程度。在本研究中,创建了静电纺丝的水性聚氨酯(WPU)纳米纤维膜(NFM),用于修复或重建肌腱以减少粘附。在静电纺丝工艺中,水用作WPU的溶剂,该溶剂环保且无毒。分析了WPU NFM的纳米纤维结构和孔径。它们的微孔(0.78–1.05 µm)阻止了成纤维细胞的渗透,这可能导致愈合过程中腱周围的粘连和瘢痕形成。 WPU的释放模仿了腱周围滑膜产生的滑液的润滑效果。体外细胞研究表明,WPU NFM有效减少了附着的成纤维细胞数量,并且没有明显的细胞毒性。使用兔屈肌腱修复模型进行的体内研究表明,WPU NFM可以降低总体粘附的程度;组织学横截面评估;并测量指间关节的活动范围(近端和远端指间关节分别为97.1±14.7和79.0±12.4度),肌腱偏移长度(11.6±1.9 cm)以及生物力学特性。

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