壳聚糖
再生(生物学)
电气导管
周围神经
生物医学工程
材料科学
灵活性(工程)
组织工程
粘附
神经导管
外围设备
化学
解剖
医学
复合材料
细胞生物学
机械工程
内科学
工程类
生物
统计
生物化学
数学
作者
Hongyu Liu,Yanan Zhao,Jun Tong,Xiaowen Shi,Yun Chen,Yumin Du
摘要
The development of peripheral nerve tissue engineering requires a safe and reliable methodology to construct biodegradable conduits. Herein, a new type of chitosan-based nerve-guide hydrogel conduit (CNHC) with enhanced mechanical flexibility in the wet state was fabricated using a one-step electrofabrication technology. The formation of the chitosan conduit is a physical process which can be conducted in a mild water phase without toxic crosslinks. The current density during electrofabrication has a profound effect on the physical and structural properties of the conduits. Cytocompatibility results indicate that the CNHC can promote cell proliferation and adhesion. Functional and histological tests indicate that the CNHC has the ability to guide the growth of axons through the conduit to reach a distal stump, which is closely similar to the autograft group. Overall, the results of this study demonstrate that the CNHCs from electrofabrication have a great potential in peripheral nerve regeneration.
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