標題: Nanoimprinted Anisotropic Topography Preferentially Guides Axons and Enhances Nerve Regeneration
作者: Huang, Yun-An
Ho, Chris T.
Lin, Yu-Hsuan
Lee, Chen-Ju
Ho, Szu-Mo
Li, Ming-Chia
Hwang, Eric
交大名義發表
生物科技學系
生物資訊及系統生物研究所
分子醫學與生物工程研究所
National Chiao Tung University
Department of Biological Science and Technology
Institude of Bioinformatics and Systems Biology
Institute of Molecular Medicine and Bioengineering
關鍵字: microfabricated substratum nerve regeneration;neurite guidance;tissue engineering;topographic guidance
公開日期: 1-十二月-2018
摘要: Surface topography has a profound effect on the development of the nervous system, such as neuronal differentiation and morphogenesis. While the interaction of neurons and the surface topography of their local environment is well characterized, the neuron-topography interaction during the regeneration process remains largely unknown. To address this question, an anisotropic surface topography resembling linear grooves made from poly(ethylene-vinyl acetate) (EVA), a soft and biocompatible polymer, using nanoimprinting, is established. It is found that neurons from both the central and peripheral nervous system can survive and grow on this grooved surface. Additionally, it is observed that axons but not dendrites specifically align with these grooves. Furthermore, it is demonstrated that neurons on the grooved surface are capable of regeneration after an on-site injury. More importantly, these injured neurons have an accelerated and enhanced regeneration. Together, the data demonstrate that this anisotropic topography guides axon growth and improves axon regeneration. This opens up the possibility to study the effect of surface topography on regenerating axons and has the potential to be developed into a medical device for treating peripheral nerve injuries.
URI: http://dx.doi.org/10.1002/mabi.201800335
http://hdl.handle.net/11536/148574
ISSN: 1616-5187
DOI: 10.1002/mabi.201800335
期刊: MACROMOLECULAR BIOSCIENCE
Volume: 18
顯示於類別:期刊論文