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Stem Cell Transplantation Enhances Endogenous Brain Repair after Experimental Stroke

机译:实验性中风后干细胞移植可增强内源性脑修复

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摘要

Stem cell transplantation for stroke treatment has been a promising therapy in small and large animal models, and many clinical trials are ongoing to establish this strategy in a clinical setting. However, the mechanism underlying functional recovery after stem cell transplantation has not been fully established and there is still a need to determine the ideal subset of stem cells for such therapy. We herein reviewed the recent evidences showing the underlying mechanism of functional recovery after cell transplantation, focusing on endogenous brain repair. First, angiogenesiseovascularization is promoted by trophic factors including vascular endothelial growth factor secreted from stem cells, and stem cells migrated to the lesion along with the vessels. Second, axonal sprouting, dendritic branching, and synaptogenesis were enhanced altogether in the both ipsilateral and contralateral hemisphere remapping the pyramidal tract across the board. Finally, endogenous neurogenesis was also enhanced although little is known how much these neurogenesis contribute to the functional recovery. Taken together, it is clear that stem cell transplantation provides functional recovery via endogenous repair enhancement from multiple ways. This is important to maximize the effect of stem cell therapy after stroke, although it is still undetermined which repair mechanism is mostly contributed.
机译:在中小型动物模型中,用于中风治疗的干细胞移植一直是一种有前途的疗法,许多临床试验正在进行中,以在临床环境中建立这种策略。然而,干细胞移植后功能恢复的基础机制尚未完全确立,仍然需要确定用于此类治疗的理想干细胞亚群。我们在此回顾了最近的证据,这些证据显示了细胞移植后功能恢复的潜在机制,重点是内源性脑修复。首先,营养因子(包括从干细胞分泌的血管内皮生长因子)促进血管发生/新生血管形成,并且干细胞与血管一起迁移到病变处。其次,在同侧和对侧半球中,轴突发芽,树突分支和突触形成都被完全增强,从而重新映射了整个锥体束。最后,内源性神经发生也得到增强,尽管这些神经发生对功能恢复的贡献尚不清楚。综上所述,很明显,干细胞移植通过多种途径通过内源性修复增强提供功能恢复。尽管仍不确定哪个修复机制是最主要的,但这对于最大化中风后干细胞治疗的效果很重要。

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