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首页> 外文期刊>Trends in Neurosciences >Ca2+-Zn2+ permeable AMPA or kainate receptors: possible key factors in selective neurodegeneration.
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Ca2+-Zn2+ permeable AMPA or kainate receptors: possible key factors in selective neurodegeneration.

机译:Ca2 + -Zn2 +渗透性AMPA或红藻氨酸受体:选择性神经变性的可能关键因素。

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摘要

Neurological diseases, including global ischemia, Alzheimer's disease and amyotrophic lateral sclerosis, are characterized by selective patterns of neurodegeneration. Most studies of potential glutamate-receptor-mediated contributions to disease have focused on the highly Ca2+-permeable and widely distributed NMDA-receptor channel. However, an alternative hypothesis is that the presence of AMPA- or kainate-receptor channels that are directly permeable to Ca2+ ions (Ca-A/K-receptor channels) is of greater significance to the neuronal loss seen in these conditions. Besides a restricted distribution and high Ca2+ permeability, two other factors make Ca-A/K receptors appealing candidate contributors to selective injury: their high permeability to Zn2+ ions and the possibility that their numbers increase in disease-associated conditions. Further characterization of the functions of these channels should result in new approaches to treatment of these conditions.
机译:神经疾病,包括整体缺血,阿尔茨海默氏病和肌萎缩性侧索硬化症,以神经变性的选择性模式为特征。大多数关于谷氨酸受体介导的疾病贡献的研究都集中在高Ca2 +渗透性和广泛分布的NMDA受体通道上。但是,另一种假设是,存在直接可渗透Ca2 +离子的AMPA或海藻酸盐受体通道(Ca-A / K受体通道),对于在这些情况下看到的神经元丢失具有更大的意义。除了分布受限和高Ca2 +渗透性外,其他两个因素也使得Ca-A / K受体吸引了选择性损伤的候选因素:它们对Zn2 +离子的高渗透性以及在疾病相关疾病中其数量增加的可能性。这些通道功能的进一步表征应导致治疗这些疾病的新方法。

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