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首页> 外文期刊>International Journal of Nanomedicine >A novel bacterial cellulose membrane immobilized with human umbilical cord mesenchymal stem cells-derived exosome prevents epidural fibrosis
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A novel bacterial cellulose membrane immobilized with human umbilical cord mesenchymal stem cells-derived exosome prevents epidural fibrosis

机译:一种固定有人脐带间充质干细胞的外来体固定的新型细菌纤维素膜可防止硬膜外纤维化

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Introduction: Failed back surgery syndrome is a situation where there is failure after lumbar surgery aimed at correcting lumbar disease that is characterized by continuous back and/or leg pain. Epidural fibrosis and adhesions are among the major causes of failed back surgery syndrome. In recent years, several biomaterials have been applied as barriers or deterrents to prevent the compression of neural structures by postsurgical fibrosis. Methods: In this study, a new bacterial cellulose (BC) anti-adhesion membrane, composed of exosomes from human umbilical cord mesenchymal stem cells, was developed. Its structure and morphology, water content, thickness, and mechanical properties of elasticity were analyzed and characterized. The degradation of the BC+exosomes (BC+Exos) membrane in vitro was evaluated, and its in vitro cytotoxicity and in vivo biocompatibility were tested. The prevention effect of BC+Exos membrane on epidural fibrosis post-laminectomy in a rabbit model was investigated. Results: The BC+Exos membrane showed a three-dimensional network structure constituted of high-purity cellulose and moderate mechanical properties. No degeneration was observed. The BC+Exos membrane showed no cytotoxicity and displayed biocompatibility in vivo. The BC+Exos film was able to inhibit epidural fibrosis and peridural adhesions. Conclusion: Based on the current findings, the BC+Exos membrane is a promising material to prevent postoperative epidural fibrosis and adhesion.
机译:简介:失败的背部手术综合症是指腰部手术后出现的旨在纠正以持续的背部和/或腿部疼痛为特征的腰椎疾病的失败的情况。硬膜外纤维化和粘连是失败的背部手术综合症的主要原因。近年来,几种生物材料已被用作屏障或威慑剂,以防止术后纤维化对神经结构的压迫。方法:在这项研究中,开发了一种新的细菌纤维素(BC)抗粘附膜,该膜由人脐带间充质干细胞的外泌体组成。分析和表征了其结构和形态,含水量,厚度和弹性力学性能。评估了BC +外来体(BC + Exos)膜的体外降解,并测试了其体外细胞毒性和体内生物相容性。研究了BC + Exos膜对兔模型椎板切除术后硬膜外纤维化的预防作用。结果:BC + Exos膜显示出由高纯度纤维素和适度机械性能组成的三维网络结构。没有观察到变性。 BC + Exos膜在体内未显示任何细胞毒性并显示出生物相容性。 BC + Exos膜能够抑制硬膜外纤维化和硬膜外粘连。结论:根据目前的发现,BC + Exos膜是预防术后硬膜外纤维化和粘连的有前途的材料。

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