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首页> 外文期刊>Nature medicine >Increased vulnerability of hippocampal neurons to excitotoxic necrosis in presenilin-1 mutant knock-in mice.
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Increased vulnerability of hippocampal neurons to excitotoxic necrosis in presenilin-1 mutant knock-in mice.

机译:在presenilin-1突变敲除小鼠中海马神经元对兴奋性毒性坏死的脆弱性增加。

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摘要

Excitotoxicity, a form of neuronal injury in which excessive activation of glutamate receptors results in cellular calcium overload, has been implicated in the pathogenesis of Alzheimer disease (AD), although direct evidence is lacking. Mutations in the presenilin-1 (PS1) gene on chromosome 14 are causally linked to many cases of early-onset inherited AD (refs. 5,6). We generated PS1 mutant mice (PS1M146VKI) that express the PS1 M146V targeted allele at normal physiological levels. Although PS1M146VKI mice have no overt mutant phenotype, they are hypersensitive to seizure-induced synaptic degeneration and necrotic neuronal death in the hippocampus. Cultured hippocampal neurons from PS1M146VKI mice have increased vulnerability to death induced by glutamate, which is correlated with perturbed calcium homeostasis, increased oxidative stress and mitochondrial dysfunction. Agents that suppress calcium influx or release and antioxidants protect neurons against the excitotoxic action of the PS1 mutation. These findings establish a direct link between a genetic defect that causes AD and excitotoxic neuronal degeneration, and indicate new avenues for therapeutic intervention in AD patients.
机译:兴奋毒性是一种神经元损伤,其中谷氨酸受体的过度激活导致细胞钙超载,尽管缺乏直接的证据,但与阿尔茨海默病(AD)的发病机理有关。 14号染色体上presenilin-1(PS1)基因的突变与许多早发遗传性AD病例有因果关系(参考文献5,6)。我们生成了PS1突变小鼠(PS1M146VKI),它们以正常生理水平表达PS1 M146V靶向等位基因。尽管PS1M146VKI小鼠没有明显的突变表型,但它们对癫痫发作引起的突触变性和海马坏死性神经元死亡非常敏感。来自PS1M146VKI小鼠的培养的海马神经元对谷氨酸诱导的死亡易感性增加,这与摄动的钙稳态,氧化应激增加和线粒体功能障碍有关。抑制钙流入或释放的药物和抗氧化剂可保护神经元免受PS1突变的兴奋性毒性作用。这些发现在引起AD的遗传缺陷与兴奋性神经元变性之间建立了直接联系,并为AD患者的治疗干预提供了新途径。

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