Liu Shuo, Xie Yuan-Yuan, Wang Bin
Clinical Stem Cell Center, The Affiliated Drum Tower Hospital of Nanjing University Medical School, Nanjing, Jiangsu Province, China.
Neural Regen Res. 2019 Aug;14(8):1352-1363. doi: 10.4103/1673-5374.253512.
Axonal junction defects and an inhibitory environment after spinal cord injury seriously hinder the regeneration of damaged tissues and neuronal functions. At the site of spinal cord injury, regenerative biomaterials can fill cavities, deliver curative drugs, and provide adsorption sites for transplanted or host cells. Some regenerative biomaterials can also inhibit apoptosis, inflammation and glial scar formation, or further promote neurogenesis, axonal growth and angiogenesis. This review summarized a variety of biomaterial scaffolds made of natural, synthetic, and combined materials applied to spinal cord injury repair. Although these biomaterial scaffolds have shown a certain therapeutic effect in spinal cord injury repair, there are still many problems to be resolved, such as product standards and material safety and effectiveness.
脊髓损伤后的轴突连接缺陷和抑制性环境严重阻碍受损组织的再生和神经元功能。在脊髓损伤部位,再生生物材料可以填充空洞、递送治疗药物,并为移植细胞或宿主细胞提供吸附位点。一些再生生物材料还可以抑制细胞凋亡、炎症和胶质瘢痕形成,或进一步促进神经发生、轴突生长和血管生成。本文综述了多种由天然材料、合成材料和复合材料制成的应用于脊髓损伤修复的生物材料支架。尽管这些生物材料支架在脊髓损伤修复中已显示出一定的治疗效果,但仍有许多问题有待解决,如产品标准以及材料的安全性和有效性。