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去细胞化神经外膜作为周围神经修复中抗粘连生物膜的制备与评价

Preparation and evaluation of decellularized epineurium as an anti-adhesive biofilm in peripheral nerve repair.

作者信息

Li Xiao, Tao Meihan, Quan Liang, Zhang Hengtong, Xin Yuan, Wu Xixi, Fang Xinyu, Fan Jun, Tian Xiaohong, Wang Xiaohong, Wen Lili, Yu Tianhao, Ao Qiang

机构信息

Department of Tissue Engineering, School of Intelligent Medicine, China Medical University, Shenyang, 110122, China.

NMPA Key Laboratory for Quality Research and Control of Tissue Regenerative Biomaterial & Institute of Regulatory Science for Medical Device & National Engineering Research Center for Biomaterials, Sichuan University, Chengdu 610064, China.

出版信息

Regen Biomater. 2024 May 13;11:rbae054. doi: 10.1093/rb/rbae054. eCollection 2024.

Abstract

Following peripheral nerve anastomosis, the anastomotic site is prone to adhesions with surrounding tissues, consequently impacting the effectiveness of nerve repair. This study explores the development and efficacy of a decellularized epineurium as an anti-adhesive biofilm in peripheral nerve repair. Firstly, the entire epineurium was extracted from fresh porcine sciatic nerves, followed by a decellularization process. The decellularization efficiency was then thoroughly assessed. Subsequently, the decellularized epineurium underwent proteomic analysis to determine the remaining bioactive components. To ensure biosafety, the decellularized epineurium underwent cytotoxicity assays, hemolysis tests, cell affinity assays, and assessments of the immune response following subcutaneous implantation. Finally, the functionality of the biofilm was determined using a sciatic nerve transection and anastomosis model in rats. The result indicated that the decellularization process effectively removed cellular components from the epineurium while preserving a number of bioactive molecules, and this decellularized epineurium was effective in preventing adhesion while promoting nerve repairment and functional recovery. In conclusion, the decellularized epineurium represents a novel and promising anti-adhesion biofilm for enhancing surgical outcomes of peripheral nerve repair.

摘要

周围神经吻合术后,吻合部位容易与周围组织粘连,从而影响神经修复的效果。本研究探讨了去细胞化的神经外膜作为外周神经修复中抗粘连生物膜的发展及疗效。首先,从新鲜猪坐骨神经中提取完整的神经外膜,然后进行去细胞化处理。随后对去细胞化效率进行了全面评估。接着,对去细胞化的神经外膜进行蛋白质组分析,以确定剩余的生物活性成分。为确保生物安全性,对去细胞化的神经外膜进行了细胞毒性试验、溶血试验、细胞亲和力试验以及皮下植入后的免疫反应评估。最后,使用大鼠坐骨神经横断和吻合模型确定生物膜的功能。结果表明,去细胞化过程有效地从神经外膜中去除了细胞成分,同时保留了一些生物活性分子,并且这种去细胞化的神经外膜在预防粘连的同时,还能促进神经修复和功能恢复。总之,去细胞化的神经外膜是一种新型且有前景的抗粘连生物膜,可提高外周神经修复的手术效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8e5/11153341/f6e10d8181b1/rbae054f9.jpg

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