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Human embryonic stem cell derived astrocytes mediate non-cell-autonomous neuroprotection through endogenous and drug-induced mechanisms

机译:人类胚胎干细胞衍生的星形胶质细胞通过内源性和药物诱导的机制介导非细胞自主神经保护作用

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摘要

The glial environment is an important determinant of neuronal health in experimental models of neurodegeneration. Specifically, astrocytes have been shown, dependent on context, to be both injurious and protective. Human pluripotent stem cells offer a powerful new system to improve our understanding of the mechanisms underlying astrocyte-mediated neuroprotection. Here, we describe a human embryonic stem cell (HESC)-based system to assess the scope and mechanism of human astrocyte-mediated neuroprotection. We first report the generation of enriched and functional HESC-derived astrocytes, by combining BMP-mediated Smad and LIF-mediated JAK-STAT signalling. These astrocytes promote the protection of HESC-derived neurons against oxidative insults. Moreover, their neuroprotective capacity can be greatly enhanced by treatment with the nuclear factor-erythroid 2-related factor 2 (Nrf2)-activating triterpenoid 1[2-Cyano-3,12-dioxool-eana-1,9(11)-dien-28-oyl] trifluoroethylamide (CDDOTFEA). Activation of the transcription factor Nrf2 in human astrocytes by CDDOTFEA treatment induced expression of the glutamate-cysteine ligase (GCL) catalytic subunit, leading to enhanced GCL activity and glutathione production, and strong neuroprotection against H2O2. This enhanced neuroprotection was found to be dependent on astrocytic GCL activity, unlike the basal neuroprotection afforded by untreated astrocytes. Direct treatment of HESC-derived neurons with CDDOTFEA elicited no induction of Nrf2 target genes, nor any neuroprotection. Thus, human astrocytes can mediate neuroprotection through glutathione-dependent and glutathione-independent mechanisms, and represent a therapeutic target for human disorders associated with neuronal oxidative stress.
机译:在神经变性实验模型中,神经胶质环境是神经元健康的重要决定因素。具体而言,已根据背景显示星形胶质细胞既有害又具有保护性。人类多能干细胞提供了一个强大的新系统,可改善我们对星形胶质细胞介导的神经保护机制的了解。在这里,我们描述了一个基于人类胚胎干细胞(HESC)的系统,以评估人类星形胶质细胞介导的神经保护作用的范围和机制。我们首先通过结合BMP介导的Smad和LIF介导的JAK-STAT信号传导,报道了丰富且功能丰富的HESC衍生星形胶质细胞的生成。这些星形胶质细胞可促进HESC衍生的神经元免受氧化损伤。此外,它们的神经保护能力可以通过用核因子-类胡萝卜素2相关因子2(Nrf2)激活三萜1 [2-Cyano-3,12-dioxool-eana-1,9(11)-dien治疗-28-oyl]三氟乙酰胺(CDDO TFEA )。 CDDO TFEA 处理激活的星形胶质细胞中转录因子Nrf2诱导了谷氨酸-半胱氨酸连接酶(GCL)催化亚基的表达,从而增强了GCL活性和谷胱甘肽的产生,并对H2O2具有强大的神经保护作用。发现这种增强的神经保护作用依赖于星形细胞的GCL活性,这与未经处理的星形胶质细胞提供的基础神经保护作用不同。用CDDO TFEA 直接治疗HESC来源的神经元不会引起Nrf2靶基因的诱导,也没有神经保护作用。因此,人类星形胶质细胞可以通过依赖谷胱甘肽和不依赖谷胱甘肽的机制介导神经保护作用,并代表与神经元氧化应激相关的人类疾病的治疗靶标。

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