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诱导神经肽Y-Y1受体的下调会延迟点燃的起始。

Induced down-regulation of neuropeptide Y-Y1 receptors delays initiation of kindling.

作者信息

Benmaamar Ramla, Pham-Lê Bich-Thuy, Marescaux Christian, Pedrazzini Thierry, Depaulis Antoine

机构信息

Laboratoire de Neuropharmacologie et Neurobiologie des Epilepsies, 11 Rue Humann, 67085 Strasbourg, France.

出版信息

Eur J Neurosci. 2003 Aug;18(4):768-74. doi: 10.1046/j.1460-9568.2003.02810.x.

Abstract

Neuropeptide Y appears to modulate epileptic seizures differentially according to the receptor subtypes involved. In the hippocampus, neuropeptide Y expression and release are enhanced in different models of epileptogenesis. On the contrary, the expression of Y1 receptors is decreased and it has been shown that activation of these receptors has pro-convulsant effects. The aim of our study was to investigate the role of Y1 receptors during hippocampal kindling epileptogenesis using (i) knock-out mice lacking Y1 receptors and (ii) intrahippocampal infusion of Y1 antisense oligodeoxynucleotide in rats. Y1 knock-out mice showed similar susceptibility to seizure induction and presented no difference in kindling development as compared with their control littermates. Conversely, local hippocampal down-regulation of Y1 receptors during the first week of hippocampal kindling, induced by a local infusion of a Y1 antisense oligodeoxynucleotide, significantly increased seizure threshold intensity and decreased afterdischarge duration. A reverse effect was observed during the week following the infusion period, which was confirmed by a significant decrease in the number of hippocampal stimulations necessary to evoke generalized seizures. At the end of this second week, an up-regulation of Y1 receptors was observed in kindled rats infused with the antisense as compared with the mismatch-treated controls. Our results in the rat suggest that the down-regulation of Y1 receptors in the hippocampus participates in the control of the initiation of epileptogenesis. The lack of an effect of the deficiency of Y1 receptors in the control of kindling development in Y1 knock-out mice could be due to compensatory mechanisms.

摘要

神经肽Y似乎根据所涉及的受体亚型对癫痫发作产生不同的调节作用。在海马体中,神经肽Y的表达和释放在不同的癫痫发生模型中会增强。相反,Y1受体的表达会降低,并且已经表明激活这些受体会产生促惊厥作用。我们研究的目的是使用(i)缺乏Y1受体的基因敲除小鼠和(ii)在大鼠海马体内注入Y1反义寡脱氧核苷酸,来研究Y1受体在海马体点燃癫痫发生过程中的作用。Y1基因敲除小鼠对癫痫发作诱导的敏感性与对照同窝小鼠相似,在点燃发展过程中没有差异。相反,在海马体点燃的第一周,通过局部注入Y1反义寡脱氧核苷酸诱导海马体局部Y1受体下调,显著提高了癫痫发作阈值强度并缩短了放电后持续时间。在注入期后的一周观察到相反的效果,这通过诱发全身性癫痫发作所需的海马体刺激次数显著减少得到证实。在第二周结束时,与错配处理的对照组相比,注入反义寡脱氧核苷酸的点燃大鼠中观察到Y1受体上调。我们在大鼠中的研究结果表明,海马体中Y1受体的下调参与了癫痫发生起始的控制。Y1基因敲除小鼠中Y1受体缺乏对点燃发展的控制没有影响,可能是由于补偿机制。

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