ASICS在脑缺血中的作用。

Zhi-Gang Xiong, Tian-Le Xu
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引用次数: 27

摘要

脑缺血是世界范围内死亡和长期残疾的主要原因。神经元细胞内Ca(2+)的过量积累被认为是脑缺血相关神经元损伤的必要因素。尽管谷氨酸受体参与神经元Ca(2+)积累和毒性已被深入研究,但这些受体的抑制剂在临床试验中显示效果甚微。因此,必须涉及额外的Ca(2+)毒性途径。酸中毒是脑缺血的常见特征,已知可引起脑损伤。然而,其机制尚不清楚。ASIC1a通道在脑神经元中高度富集,它们在缺血性酸中毒中被激活,它们表现出的Ca(2+)渗透性表明这些通道在Ca(2+)积累和脑缺血相关的神经元损伤中起作用。事实上,许多研究已经提供了确凿的证据支持ASIC1a通道激活参与缺血性脑损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of ASICS in cerebral ischemia.

Cerebral ischemia is a leading cause of death and long-term disabilities worldwide. Excessive intracellular Ca(2+) accumulation in neurons has been considered essential for neuronal injury associated with cerebral ischemia. Although the involvement of glutamate receptors in neuronal Ca(2+) accumulation and toxicity has been the subject of intensive investigation, inhibitors for these receptors showed little effect in clinical trials. Thus, additional Ca(2+) toxicity pathway(s) must be involved. Acidosis is a common feature in cerebral ischemia and was known to cause brain injury. The mechanisms were, however, unclear. The finding that ASIC1a channels are highly enriched in brain neurons, their activation by ischemic acidosis, and their demonstrated Ca(2+) permeability suggested a role for these channels in Ca(2+) accumulation and neuronal injury associated with cerebral ischemia. Indeed, a number of studies have now provided solid evidence supporting the involvement of ASIC1a channel activation in ischemic brain injury.

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