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外泌体与生物合成纤维素导管相结合可促进周围神经再生。

Exosomes combined with biosynthesized cellulose conduits improve peripheral nerve regeneration.

作者信息

Cui Tian-Wei, Lu Li-Fang, Cao Xu-Dong, Zhang Quan-Peng, He Yue-Bin, Wang Ya-Ru, Ren Rui, Ben Xin-Yu, Ni Pan-Li, Ma Zhi-Jian, Li Yun-Qing, Yi Xi-Nan, Feng Ren-Jun

机构信息

Key Laboratory of Brain Science Research and Transformation in Tropical Environment of Hainan Province, Hainan Medical University, Haikou, China.

Department of Human Anatomy, Hainan Medical University, Haikou, China.

出版信息

IBRO Neurosci Rep. 2023 Sep 29;15:262-269. doi: 10.1016/j.ibneur.2023.09.009. eCollection 2023 Dec.

Abstract

Peripheral nerve injury is one of the more common forms of peripheral nerve disorders, and the most severe type of peripheral nerve injury is a defect with a gap. Biosynthetic cellulose membrane (BCM) is a commonly used material for repair and ligation of nerve defects with gaps. Meanwhile, exosomes from mesenchymal stem cells can promote cell growth and proliferation. We envision combining exosomes with BCMs to leverage the advantages of both to promote repair of peripheral nerve injury. Prepared exosomes were added to BCMs to form exosome-loaded BCMs (EXO-BCM) that were used for nerve repair in a rat model of sciatic nerve defects with gaps. We evaluated the repair activity using a pawprint experiment, measurement and statistical analyses of sciatica function index and thermal latency of paw withdrawal, and quantitation of the number and diameter of regenerated nerve fibers. Results indicated that EXO-BCM produced comprehensive and durable repair of peripheral nerve defects that were similar to those for autologous nerve transplantation, the gold standard for nerve defect repair. EXO-BCM is not predicted to cause donor site morbidity to the patient, in contrast to autologous nerve transplantation. Together these results indicate that an approach using EXO-BCM represents a promising alternative to autologous nerve transplantation, and could have broad applications for repair of nerve defects.

摘要

周围神经损伤是周围神经疾病中较常见的形式之一,而最严重的周围神经损伤类型是存在间隙的缺损。生物合成纤维素膜(BCM)是用于修复和结扎有间隙的神经缺损的常用材料。同时,间充质干细胞来源的外泌体可促进细胞生长和增殖。我们设想将外泌体与BCM结合,以利用两者的优势来促进周围神经损伤的修复。将制备的外泌体添加到BCM中,形成负载外泌体的BCM(EXO-BCM),用于坐骨神经缺损有间隙的大鼠模型的神经修复。我们通过足迹实验、坐骨神经功能指数和爪退缩热潜伏期的测量及统计分析以及再生神经纤维数量和直径的定量来评估修复活性。结果表明,EXO-BCM对周围神经缺损产生了全面而持久的修复,类似于神经缺损修复的金标准自体神经移植。与自体神经移植不同,预计EXO-BCM不会给患者带来供体部位并发症。这些结果共同表明,使用EXO-BCM的方法是自体神经移植的一种有前景的替代方法,并且可能在神经缺损修复中具有广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f3b/10570595/dcd307594f2f/gr1.jpg

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