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首页> 外文期刊>Experimental Neurology >Mesenchymal stem cells exert a remarkable regenerative effect requiring minimal CNS integration. Commentary on: 'Mesenchymal stem cells protect CNS neurons against glutamate excitotoxicity by inhibiting glutamate receptor expression and function' by Voulgari-Kokota et al.
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Mesenchymal stem cells exert a remarkable regenerative effect requiring minimal CNS integration. Commentary on: 'Mesenchymal stem cells protect CNS neurons against glutamate excitotoxicity by inhibiting glutamate receptor expression and function' by Voulgari-Kokota et al.

机译:间充质干细胞对需要最小的CNS集成的显着再生效果。 评注:“间充质干细胞通过抑制谷氨酸受体表达和voulgari-Kokota等,通过抑制谷氨酸受体表达和功能来保护CNS神经元免受谷氨酸吞噬毒性。

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摘要

The concept of repair of the nervous system by adult stem cells has recently evolved from the original hypothesis that tissue regeneration could have been achieved through stem cell differentiation into neural cells to the current vision that they act mainly by means of paracrine mechanisms. In a recent paper from Voulgari-Kokota and colleagues in the July issue of Experimental Neurology it was shown that bone marrow-derived mesenchymal stem cells (MSC) can protect against glutamate excitotoxicity in a mouse model of temporal lobe epilepsy and that conditioned medium from MSC could rescue primary cortical neurons from glutamate-receptor induced cell death. Other studies have emphasized that MSC secretome may suffice to recapitulate many of the effects carried out by these cells on immune and tissue resident cells. However, MSC priming by local cues, upon interaction with the host environment, represents a prerequisite to maximally enhance their therapeutic plasticity. Future studies will have to resolve if stem cell transplantation is still preferable over the administration of their secreted factors.
机译:成人干细胞修复神经系统的概念最近从原始假设中演变,即通过干细胞分化可以通过茎细胞分化来实现组织再生,以通过旁静脉机制来实现它们的目前的视觉。在最近从Voulgari-Kokota及其同事造成的7月份的实验性神经内科的论文中,显示骨髓衍生的间充质干细胞(MSC)可以在颞叶癫痫的小鼠模型中免受谷氨酸兴奋性毒性,以及来自MSC的调节培养基可以从谷氨酸受体诱导的细胞死亡中拯救原发性皮质神经元。其他研究强调,MSC沉淀可能足以重新承载这些细胞对免疫和组织驻留细胞上这些细胞进行的许多效应。然而,在与宿主环境相互作用时,本地提示的MSC引发代表了最大程度地增强其治疗可塑性的先决条件。未来的研究将不得不解决,如果干细胞移植在其分泌因子的给药方面仍然是优选的。

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