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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Orexin-A promotes Glu uptake by OX1R/PKC alpha/ERK1/2/GLT-1 pathway in astrocytes and protects co-cultured astrocytes and neurons against apoptosis in anoxia/hypoglycemic injury in vitro
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Orexin-A promotes Glu uptake by OX1R/PKC alpha/ERK1/2/GLT-1 pathway in astrocytes and protects co-cultured astrocytes and neurons against apoptosis in anoxia/hypoglycemic injury in vitro

机译:orexin-a通过在星形胶质细胞中通过Ox1r / pKcα/ Erk1 / 2 / Glt-1途径促进Glu吸收,并保护共同培养的星形细胞和神经元免受体外缺氧性损伤的细胞凋亡

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摘要

Orexin-A, which is an endogenous neuropeptide, is reported to have a protective role in ischemic stroke. High-concentration glutamic acid (Glu) induced by hypoxia injury in ischemic stroke can be inhibited by glial glutamate transporter GLT-1 which is only expressed in astroglia cells. A previous study reported that Orexin-A may regulate GLT-1 expression. However, the role of orexin-A in the regulation of GLT-1 in ischemic stroke still remains unclear. In this study, we aimed to investigate the effect and the underlying mechanism of orexin-A on Glu uptake in astrocytes in vitro and this effect on protecting the neurons from anoxia/hypoglycemic injury. The expression of GLT-1 significantly increased in the astrocytes with orexin-A treatment under anoxia/hypoglycemic conditions, promoting the uptake of Glu and inhibiting the apoptosis of co-cultured cells of astrocytes and neurons. However, these effects were significantly weakened by treatment with orexin-A receptor 1 (OX1R) antagonist. Orexin-A significantly up-regulated the expressions of PKC alpha and ERK1/2 under anoxia/hypoglycemic conditions in astrocytes, whereas the OX1R antagonist markedly reversed the effect. Furthermore, PKC alpha or ERK1/2 inhibitor significantly constrained the GLT-1 expression in astrocytes and facilitated the apoptosis of co-cultured cells, and GLT-1 overexpression could reverse those effects of PKC alpha or ERK1/2 inhibitor. Taken together, orexin-A promoted the GLT-1 expression via OX1R/PKC alpha/ERK1/2 pathway in astrocytes and protected co-cultured cells against anoxia/hypoglycemic injury.
机译:据报道,作为内源性神经肽的orexin-a在缺血性中风中具有保护作用。缺血性卒中缺氧损伤诱导的高浓度谷氨酸(Glu)可以通过胶质谷氨酸转运蛋白转运蛋白转运蛋白-1抑制,其仅在星形菌细胞中表达。先前的研究报告说orexin-a可以调节Glt-1表达。然而,orexin-a在缺血性卒中调节中的作用仍然尚不清楚。在这项研究中,我们旨在探讨Orexin-A对体外星形胶质细胞胶质胶质血糖摄取的影响及其对保护缺氧性损伤神经元的影响。在缺氧/低血糖条件下的orexin-a治疗中的星形胶质细胞中的GLT-1的表达显着增加,促进了Glu的摄取并抑制星形胶质细胞和神经元的共同培养细胞的凋亡。然而,通过用orexin-a受体1(OX1R)拮抗剂治疗显着减弱这些效果。 orexin-a显着上调了星形胶质细胞的缺氧/低血糖条件下PKCα和ERK1 / 2的表达,而OX1R拮抗剂显着逆转效果。此外,PKCα或ERK1 / 2抑制剂显着限制了星形胶质细胞中的GLT-1表达,促进了共培养细胞的凋亡,GLT-1过表达可以逆转PKCα或ERK1 / 2抑制剂的那些作用。连合在一起,Orexin-A通过在星形胶质细胞中的Ox1R / PKCα/ ERK1 / 2途径促进GLT-1表达,并受到免受缺氧性血糖损伤的保护的共培养细胞。

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