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Host induction by transplanted neural stem cells in the spinal cord: Further evidence for an adult spinal cord neurogenic niche

机译:脊髓中神经干细胞的移植诱导宿主:成年脊髓神经源性利基的进一步证据

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Aim: To explore the hypothesis that grafts of exogenous stem cells in the spinal cord of athymic rats or rats with transgenic motor neuron disease can induce endogenous stem cells and initiate intrinsic repair mechanisms that can be exploited in amyotrophic lateral sclerosis therapeutics. Materials & methods: Human neural stem cells (NSCs) were transplanted into the lower lumbar spinal cord of healthy rats or rats with transgenic motor neuron disease to explore whether signals related to stem cells can initiate intrinsic repair mechanisms in normal and amyotrophic lateral sclerosis subjects. Patterns of migration and differentiation of NSCs in the gray and white matter, with emphasis on the central canal region and ependymal cell-driven neurogenesis, were analyzed. Results: Findings suggest that there is extensive cross-signaling between transplanted NSCs and a putative neurogenic niche in the ependyma of the lower lumbar cord. The formation of a neuronal cord from NSC-derived cells next to ependyma suggests that this structure may serve a mediating or auxiliary role for ependymal induction. Conclusion: These findings raise the possibility that NSCs may stimulate endogenous neurogenesis and initiate intrinsic repair mechanisms in the lower spinal cord.
机译:目的:探讨假说,无胸腺大鼠或患有转基因运动神经元疾病的大鼠的脊髓中外源性干细胞的移植可以诱导内源性干细胞并启动可用于肌萎缩性侧索硬化治疗的内在修复机制。材料与方法:将人类神经干细胞(NSC)移植到健康大鼠或转基因运动神经元疾病大鼠的下腰脊髓中,以探索与干细胞相关的信号是否可以启动正常和肌萎缩性侧索硬化受试者的内在修复机制。分析了神经干细胞在灰质和白质中的迁移和分化模式,重点是中央管区和室管膜细胞驱动的神经发生。结果:研究结果表明,移植的NSC与下腰脊髓室管膜假定的神经源利基之间存在广泛的交叉信号。 NSC来源的细胞与室管膜相邻形成神经元线,表明该结构可能为室管膜诱发起中介作用或辅助作用。结论:这些发现增加了神经干细胞可能刺激内源性神经发生并启动下脊髓固有修复机制的可能性。

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