Faccendini Angela, Vigani Barbara, Rossi Silvia, Sandri Giuseppina, Bonferoni Maria Cristina, Caramella Carla Marcella, Ferrari Franca
Department of Drug Sciences, University of Pavia, Viale Taramelli, 12, 27100 Pavia, Italy.
Pharmaceuticals (Basel). 2017 Jul 5;10(3):63. doi: 10.3390/ph10030063.
The complex pathophysiology of spinal cord injury (SCI) may explain the current lack of an effective therapeutic approach for the regeneration of damaged neuronal cells and the recovery of motor functions. A primary mechanical injury in the spinal cord triggers a cascade of secondary events, which are involved in SCI instauration and progression. The aim of the present review is to provide an overview of the therapeutic neuro-protective and neuro-regenerative approaches, which involve the use of nanofibers as local drug delivery systems. Drugs released by nanofibers aim at preventing the cascade of secondary damage (neuro-protection), whereas nanofibrous structures are intended to re-establish neuronal connectivity through axonal sprouting (neuro-regeneration) promotion, in order to achieve a rapid functional recovery of spinal cord.
脊髓损伤(SCI)复杂的病理生理学机制或许可以解释为何目前缺乏有效的治疗方法来促进受损神经元细胞的再生以及运动功能的恢复。脊髓原发性机械损伤会引发一系列继发性事件,这些事件与SCI的发生和进展相关。本综述的目的是概述治疗性神经保护和神经再生方法,其中涉及使用纳米纤维作为局部药物递送系统。纳米纤维释放的药物旨在防止继发性损伤的级联反应(神经保护),而纳米纤维结构则旨在通过促进轴突发芽来重建神经元连接(神经再生),以实现脊髓功能的快速恢复。