He Liumin, Tian Lingling, Sun Yuqiao, Zhang Yongnu, Xue Wei, So Kwok-Fai, Ramakrishna Seeram, Wu Wutian
Guangdong-Hongkong- Macau Institute of CNS Regeneration (GHMICR), Jinan University, Guangzhou 510632, China.
Curr Stem Cell Res Ther. 2016;11(8):605-617. doi: 10.2174/1574888x10666151001114735.
One of the most complex systems in the human body is the nervous system, which is divided into the central and peripheral nervous systems. The regeneration of the CNS is a complex and challenging biological phenomenon hindered by the low regenerative capacity of neurons and the prohibition factors in response to nerve injuries. To date, no effective approach can achieve complete recovery and fully restore the functions of the nervous system once it has been damaged. Developments in neuroscience have identified properties of the local environment with a critical role in nerve regeneration. Advances in biomaterials and biomedical engineering have explored new approaches of constructing permissive environments for nerve regeneration, thereby enabling optimism with regard to nerve-injury treatment. This article reviews recent progress in nanoengineered environments for aiding nerveinjury repair and regeneration, including nanofibrous scaffolds, functional molecules, and stem cells.
人体中最复杂的系统之一是神经系统,它分为中枢神经系统和周围神经系统。中枢神经系统的再生是一种复杂且具有挑战性的生物学现象,受到神经元再生能力低下以及神经损伤后抑制因子的阻碍。迄今为止,一旦神经系统受损,尚无有效的方法能够实现完全恢复并充分恢复其功能。神经科学的发展已经确定了局部环境在神经再生中起关键作用的特性。生物材料和生物医学工程的进展探索了构建有利于神经再生的环境的新方法,从而为神经损伤治疗带来了希望。本文综述了纳米工程环境在辅助神经损伤修复和再生方面的最新进展,包括纳米纤维支架、功能分子和干细胞。