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NMDA receptor-dependent glutamate excitotoxicity in human embryonic stem cell-derived neurons

机译:NMDA受体依赖性谷氨酸对人胚胎干细胞源神经元的兴奋性毒性

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摘要

Thanks to the development of efficient differentiation strategies, human pluripotent stem cells (HPSC) offer the opportunity for modelling neuronal injury and dysfunction in human neurons in vitro. Critically, the effective use of HPSC-derived neural cells in disease-modelling and potentially cell replacement therapies hinges on an understanding of the biology of these cells, specifically their development, subtype specification and responses to neurotoxic signalling mediators. Here, we generated neurons from human embryonic stem cells and characterised the development of vulnerability to glutamate excitotoxicity, a key contributor to neuronal injury in several acute and chronic neurodegenerative disorders. Over two months of differentiation we observed a gradual increase in responsiveness of neurons to glutamate-induced Ca2+ influx, attributable to NMDA receptor activity. This increase was concomitant with an increase in expression of mRNA encoding NMDA and AMPA receptor subunits. Differentiated neurons were vulnerable to glutamate excitotoxicity in a dose-dependent manner, which was reduced by NMDA receptor antagonists.
机译:由于有效分化策略的发展,人类多能干细胞(HPSC)提供了在体外模拟人类神经元中神经元损伤和功能障碍的机会。至关重要的是,HPSC衍生的神经细胞在疾病建模和潜在的细胞替代疗法中的有效使用取决于对这些细胞生物学的理解,特别是它们的发育,亚型规格以及对神经毒性信号传递介质的反应。在这里,我们从人类胚胎干细胞生成了神经元,并描述了对谷氨酸兴奋性毒性的脆弱性的发展,谷氨酸兴奋性毒性是几种急性和慢性神经退行性疾病中神经元损伤的关键因素。经过两个多月的分化,我们观察到神经元对谷氨酸诱导的Ca 2 + 大量涌入的反应性逐渐增加,这归因于NMDA受体的活性。这种增加伴随着编码NMDA和AMPA受体亚基的mRNA表达的增加。分化的神经元易受谷氨酸兴奋性毒性的影响,呈剂量依赖性,而NMDA受体拮抗剂可降低这种毒性。

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