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三种含聚乳酸的可生物降解聚合物导管修复小鼠坐骨神经的形态学和功能结果比较

Comparison of morphological and functional outcomes of mouse sciatic nerve repair with three biodegradable polymer conduits containing poly(lactic acid).

作者信息

Pestana Fernanda Marques, Domingues Rui C C, Oliveira Júlia Teixeira, Durço Daniela F P A, Goulart Camila Oliveira, Mendonça Henrique Rocha, Dos Santos Anne Caroline Rodrigues, de Campos Natália Tavares, da Silva Beatriz Theodoro, Pereira Cristina Cardoso, Borges Cristiano Piacsek, Martinez Ana Maria Blanco

机构信息

Pós Graduação em Ciências Morfológicas, Instituto de Ciências Biomédicas-UFRJ; Laboratório de Neurodegeneração e Reparo - Faculdade de Medicina - HUCFF-UFRJ, Rio de Janeiro, RJ, Brazil.

Programa de Eng. Química, COPPE-UFRJ, Rio de Janeiro, Brazil.

出版信息

Neural Regen Res. 2018 Oct;13(10):1811-1819. doi: 10.4103/1673-5374.238712.

Abstract

Poly(lactic acid) (PLA)-containing nerve guidance conduits (NGCs) are currently being investigated for nerve repair as an alternative to autograft, which leads to permanent functional impairment in the territory innervated by the removed nerve. Combination of polymers modifies the physical properties of the conduits, altering their nerve-guidance properties. Conduits made from PLA-only or combined with other polymers have been used successfully for nerve repair, but their efficiency has not been compared. We compared the morphological and functional outcomes of peripheral nerve repair by using NGCs made of poly(lactic acid) and combined or not with polycaprolactone (PLA/PCL) or polyvinylpyrrolidone (PLA/PVP). To assess the functional recovery, we employed a mechanical hyperalgesia analysis, sciatic functional index (SFI), and electroneuromyography. The mechanical hyperalgesia analysis showed that the PLA group improved more rapidly than the PLA/PVP and PLA/PCL groups; similarly, in the electroneuromyography assay, the PLA group exhibited higher amplitude than the PLA/PCL and PLA/PVP groups. However, the SFI improvement rates did not differ among the groups. Morphologically, the PLA group showed more vascularization, while the nerve fiber regeneration did not differ among the groups. In conclusion, the PLA-only conduits were superior to the other NGCs tested for nerve repair.

摘要

含聚乳酸(PLA)的神经导向导管(NGC)目前正作为自体移植的替代物用于神经修复研究,自体移植会导致被切除神经所支配区域的永久性功能损伤。聚合物的组合改变了导管的物理性质,从而改变其神经导向特性。仅由PLA制成或与其他聚合物组合制成的导管已成功用于神经修复,但其效率尚未进行比较。我们比较了使用由聚乳酸制成且与聚己内酯(PLA/PCL)或聚乙烯吡咯烷酮(PLA/PVP)组合或未组合的NGC进行周围神经修复的形态学和功能结果。为了评估功能恢复情况,我们采用了机械性痛觉过敏分析、坐骨神经功能指数(SFI)和神经肌电图检查。机械性痛觉过敏分析表明,PLA组比PLA/PVP组和PLA/PCL组改善得更快;同样,在神经肌电图检查中,PLA组的波幅高于PLA/PCL组和PLA/PVP组。然而,各组之间SFI的改善率没有差异。在形态学上,PLA组显示出更多的血管形成,而各组之间神经纤维再生没有差异。总之,仅PLA导管在神经修复方面优于所测试的其他NGC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ec2/6128044/23ff980edc8c/NRR-13-1811-g002.jpg

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