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电刺激下仿生导电神经支架促进神经再生

Enhanced Nerve Regeneration by Bionic Conductive Nerve Scaffold Under Electrical Stimulation.

作者信息

Liu Zhenhui, Liu Yanshi, Yushan Maimaiaili, Yusufu Aihemaitijiang

机构信息

Department of Orthopedics, Henan Provincial People's Hospital, Zhengzhou, China.

People's Hospital of Zhengzhou University, Zhengzhou, China.

出版信息

Front Neurosci. 2022 Apr 27;16:810676. doi: 10.3389/fnins.2022.810676. eCollection 2022.

Abstract

Repair of peripheral nerve defect (PND) with a poor prognosis is hard to deal with. Neural conduit applied to nerve defect at present could not achieve the effect of autologous nerve transplantation. We prepared bionic conductive neural scaffolds to provide a new strategy for the treatment of PNDs. The highly aligned poly (L-lactic acid) (PLLA) fiber mats and the multi-microchannel conductive scaffolds were combined into bionic conductive nerve scaffolds, which were implanted into rats with sciatic nerve defects. The experimental animals were divided into the scaffold group (S), scaffold with electrical stimulation (ES) group (S&E), and autologous nerve transplantation group (AT). The regenerative effect of bionic conductive nerve scaffolds was analyzed. Compared with aligned PLLA fiber mats (APFMs), highly aligned fiber mats had a higher fiber orientation and did not change the tensile strength, Young's modulus, degradation rate, elongation at break of the fiber membrane, and biocompatibility. The bionic conductive nerve scaffolds were well matched with the rat sciatic nerve. The evaluations of the sciatic nerve in Group S&E were close to those in Group AT and better than those in Group S. Immunohistochemical results showed that the expression levels of neurofilament heavy polypeptide (NF-H) and protein S100-B (S100-β) in Group S&E were higher than those in Group S, and the expression levels of low-density lipoprotein receptor-related protein 4 (LRP4), mitogen-activated protein kinase (MAPK) p38, extracellular signal-regulated kinase (ERK), and mitogen-activated protein kinase kinase (MEK) in Group AT were higher than those in Group S. Bionic conductive nerve scaffolds combined with ES could enhance peripheral nerve regeneration and achieve satisfactory nerve regeneration close to autologous nerve grafts. ERK, p38 MAPK, MEK, and LRP4 may be involved in peripheral nerve regeneration under ES.

摘要

预后较差的周围神经缺损(PND)修复是一项棘手的难题。目前应用于神经缺损的神经导管无法达到自体神经移植的效果。我们制备了仿生导电神经支架,为PND的治疗提供了一种新策略。将高度取向的聚(L-乳酸)(PLLA)纤维毡与多微通道导电支架组合成仿生导电神经支架,并将其植入坐骨神经缺损的大鼠体内。实验动物分为支架组(S)、电刺激支架组(S&E)和自体神经移植组(AT)。分析了仿生导电神经支架的再生效果。与取向PLLA纤维毡(APFMs)相比,高度取向的纤维毡具有更高的纤维取向度,且未改变纤维膜的拉伸强度、杨氏模量、降解速率、断裂伸长率及生物相容性。仿生导电神经支架与大鼠坐骨神经匹配良好。S&E组坐骨神经的各项评估指标接近AT组且优于S组。免疫组织化学结果显示,S&E组神经丝重多肽(NF-H)和蛋白S100-B(S100-β)的表达水平高于S组,AT组低密度脂蛋白受体相关蛋白4(LRP4)、丝裂原活化蛋白激酶(MAPK)p38、细胞外信号调节激酶(ERK)及丝裂原活化蛋白激酶激酶(MEK)的表达水平高于S组。仿生导电神经支架结合电刺激可促进周围神经再生,并实现接近自体神经移植的满意神经再生效果。ERK、p38 MAPK、MEK和LRP4可能参与了电刺激下的周围神经再生过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f209/9091912/418594b69036/fnins-16-810676-g001.jpg

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