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Novel model for the mechanisms of glutamate-dependent excitotoxicity: Role of neuronal gap junctions

机译:谷氨酸依赖性兴奋毒性机制的新型模型:神经间隙连接的作用。

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In the mammalian central nervous system (CNS), coupling of neurons by gap junctions (electrical synapses) increases during early post-natal development, then decreases, but increases in the mature CNS following neuronal injury, such as ischemia, traumatic brain injury and epilepsy. Glutamate-dependent neuronal death also occurs in the CNS during development and neuronal injury, i.e., at the time when neuronal gap junction coupling is increased. Here, we review our recent studies on the regulation of neuronal gap junction coupling by glutamate during development and injury and on the role of gap junctions in neuronal cell death. A novel model of the mechanisms of glutamate-dependent neuronal death is discussed, which includes neuronal gap junction coupling as a critical part of these mechanisms.
机译:在哺乳动物的中枢神经系统(CNS)中,间隙连接(电突触)引起的神经元耦合在出生后早期发展时增加,然后减少,但在神经元损伤(例如局部缺血,脑外伤和癫痫)后成熟的CNS中增加。在发育和神经元损伤期间,即在神经元间隙连接偶联增加时,CNS中也发生谷氨酸依赖性神经元死亡。在这里,我们回顾了我们最近的研究,即谷氨酸在发育和损伤过程中对神经间隙连接的调控以及间隙连接在神经元细胞死亡中的作用。讨论了谷氨酸依赖性神经元死亡机制的新型模型,其中包括神经元间隙连接偶联作为这些机制的关键部分。

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