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Schwann Cell-Like Cells: Origin and Usability for Repair and Regeneration of the Peripheral and Central Nervous System

机译:Schwann细胞样细胞:外周和中枢神经系统的修复和再生的来源和可用性

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摘要

Functional recovery after neurotmesis, a complete transection of the nerve fiber, is often poor and requires a surgical procedure. Especially for longer gaps (>3 mm), end-to-end suturing of the proximal to the distal part is not possible, thus requiring nerve graft implantation. Artificial nerve grafts, i.e., hollow fibers, hydrogels, chitosan, collagen conduits, and decellularized scaffolds hold promise provided that these structures are populated with Schwann cells (SC) that are widely accepted to promote peripheral and spinal cord regeneration. However, these cells must be collected from the healthy peripheral nerves, resulting in significant time delay for treatment and undesired morbidities for the donors. Therefore, there is a clear need to explore the viable source of cells with a regenerative potential similar to SC. For this, we analyzed the literature for the generation of Schwann cell-like cells (SCLC) from stem cells of different origins (i.e., mesenchymal stem cells, pluripotent stem cells, and genetically programmed somatic cells) and compared their biological performance to promote axonal regeneration. Thus, the present review accounts for current developments in the field of SCLC differentiation, their applications in peripheral and central nervous system injury, and provides insights for future strategies.
机译:神经衰竭后的功能恢复,神经纤维的完全横断,通常是穷人,需要手术程序。特别是对于更长的间隙(> 3mm),不可能的近端部分的端到端缝合,因此需要神经移植物注入。人造神经移植物,即中空纤维,水凝胶,壳聚糖,胶原导管和脱叶支架的承担承诺,条件是这些结构与施旺细胞(SC)填充,这些结构被广泛接受促进外周和脊髓再生。然而,必须从健康的周围神经中收集这些细胞,导致捐助者治疗和不希望的病症的显着时间延迟。因此,清楚地需要探索具有类似于SC的再生势的可行细胞源。为此,我们分析了从不同起源(即间充质干细胞,多能干细胞和遗传编程的体细胞)的干细胞产生施旺细胞样细胞(SCLC)的文献,并比较其生物学性能以促进轴突再生。因此,本综述占SCLC差异领域的当前发展,它们在外围和中枢神经系统损伤中的应用,并为未来的策略提供了见解。

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