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Resistance to excitotoxin-induced seizures and neuronal death in mice lacking the preprotachykinin A gene

机译:缺乏前激肽原A基因的小鼠对兴奋剂引起的癫痫发作和神经元死亡的抵抗力

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摘要

Epileptic seizures are associated with increases in hippocampal excitability, but the mechanisms that render the hippocampus hyperexcitable chronically (in epilepsy) or acutely (in status epilepticus) are poorly understood. Recent evidence suggests that substance P (SP), a peptide that has been implicated in cardiovascular function, inflammatory responses, and nociception, also contributes to hippocampal excitability and status epilepticus, in part by enhancing glutamate release. Here we report that mice with disruption of the preprotachykinin A gene, which encodes SP and neurokinin A, are resistant to kainate excitoxicity. The mice show a reduction in the duration and severity of seizures induced by kainate or pentylenetetrazole, and both necrosis and apoptosis of hippocampal neurons are prevented. Although kainate induced the expression of bax and caspase 3 in the hippocampus of wild-type mice, these critical intracellular mediators of cell death pathways were not altered by kainate injection in the mutant mice. These results indicate that the reduction of seizure activity and the neuroprotection observed in preprotachykinin A null mice are caused by the extinction of a SP/neurokinin A-mediated signaling pathway that is activated by seizures. They suggest that these neurokinins are critical to the control of hippocampal excitability, hippocampal seizures, and hippocampal vulnerability.
机译:癫痫性癫痫发作与海马兴奋性的增加有关,但是使海马长期(在癫痫中)或急性(在癫痫持续状态)过度兴奋的机制了解得很少。最近的证据表明,物质P(SP)是一种与心血管功能,炎症反应和伤害感受有关的肽,也部分通过增强谷氨酸的释放来促进海马兴奋性和癫痫持续状态。在这里,我们报告破坏前激肽原A基因编码SP和神经激肽A的小鼠对海藻酸盐兴奋性中毒。小鼠显示出由海藻酸盐或戊四氮引起的癫痫发作的持续时间和严重程度的降低,并且海马神经元的坏死和凋亡均得到预防。尽管海藻酸盐诱导野生型小鼠海马中bax和caspase 3的表达,但在突变小鼠中通过海藻酸盐注射并没有改变这些细胞死亡途径的关键细胞内介质。这些结果表明癫痫前激肽A无效小鼠中癫痫发作活性的降低和神经保护作用是由癫痫发作激活的SP /神经激肽A介导的信号传导途径的消失引起的。他们认为这些神经激肽对于控制海马兴奋性,海马癫痫发作和海马脆弱性至关重要。

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