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利用静电纺丝纳米纤维神经导管(Ngc)的纳米形貌进行神经组织工程。

Harnessing Nanotopography of Electrospun Nanofibrous Nerve Guide Conduits (NGCs) for Neural Tissue Engineering.

机构信息

Department of Bionanosystem Engineering, Graduate School, Chonbuk National University, Jeonju, South Korea.

Division of Mechanical Design Engineering, College of Engineering, Chonbuk National University, Jeonju, South Korea.

出版信息

Adv Exp Med Biol. 2018;1078:395-408. doi: 10.1007/978-981-13-0950-2_20.

Abstract

The anatomical recovery of nerve defects with their neurological functions after an injury caused by diseases or accidents is an important clinical issue. The most efficient surgical technique so far to the nerve defects, which are unrepairable by direct end-to-end suture, can be autograft transplantation. The autograft transplantation, however, has disadvantages including multiple rounds of surgery, a shortage of nerve donor, and function loss at the donor site. Tissue-engineered nerve guide conduits (TENGCs) have emerged as a potential alternative to autologous nerve grafts for nerve regeneration and functional recovery. Various TENGCs researches are being carried out to improve characteristics and enhance functionality such as material selection, biomimetic, topography, and enhancement by the biomolecules additions. Among them, the customizable surface nanotopography of aligned fibrous TENGCs foster neural repair by providing a cell-friendly environment, permissiveness, guidance cues, and directional growth of the cells. Fibrous nerve guide conduits (NGCs) made of longitudinally ordered fibers is a promising candidate for nerve tissue engineering.

摘要

神经损伤后,其解剖结构和神经功能的恢复是一个重要的临床问题。对于因疾病或事故导致无法直接进行端端缝合修复的神经缺损,最有效的手术技术是自体移植。然而,自体移植存在多次手术、供体神经短缺以及供体部位功能丧失等缺点。组织工程神经引导导管(TENGCS)作为自体神经移植物的一种潜在替代品,已经出现用于神经再生和功能恢复。目前正在进行各种 TENGCS 研究,以改善材料选择、仿生、形貌和生物分子添加等特性并增强功能。其中,排列纤维 TENGCS 的可定制表面纳米形貌通过提供细胞友好的环境、允许性、引导线索以及细胞的定向生长来促进神经修复。由纵向有序纤维制成的纤维状神经引导导管(NGC)是神经组织工程的一种有前途的候选材料。

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