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首页> 外文期刊>Brain research >Fos expression induced by activation of NMD A and neurokinin-1 receptors in the trigeminal subnucleus caudalis in vitro: Role of protein kinases
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Fos expression induced by activation of NMD A and neurokinin-1 receptors in the trigeminal subnucleus caudalis in vitro: Role of protein kinases

机译:NMD A和神经激肽-1受体在体外三叉神经尾核中的激活诱导的Fos表达:蛋白激酶的作用

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Activity-induced neuronal plasticity is partly facilitated by the expression of the immediate-early gene c-fos and the resulting transcription factor Fos. Expression of Fos is associated with nociceptive afferent activation, but a detailed stimulation-transcription pathway for Fos expression has not yet been determined in the trigeminal system. This study utilized a novel in vitro model to determine whether Fos expression can be induced in trigeminal subnucleus caudalis by NMDA or neurokinin-1 receptor activation, and whether inhibition of intracellular kinases has any effect on Fos expression induced by activation of these receptors. Brainstems of male Wistar rats were excised and maintained in artificial cerebrospinal fluid at 37 degC. NMDA or the specific neurokinin-1 receptor agonist [Sar~9.Met (O_2)~(11)]-SP was applied. These agonists were subsequently tested in the presence of the protein kinase A inhibitor Rp-cAMP or protein kinase C inhibitor chelerythrine chloride. In all experiments the sodium channel blocker tetrodotoxin was used to prevent indirect neuronal activation. Brainstems were processed immunocytochemically for Fos expression, and positive cells were counted in the trigeminal subnucleus caudalis. NMDA and [Sar~9.Met (O_2)~(11)]-SP significantly increased Fos expression, but these increases could be prevented by chelerythrine chloride. Rp-cAMP had no effect on Fos induced by NMDA but caused a significant reduction in Fos induced by [Sar~9,Met(O_2)~(11)]-SP. These data demonstrate that in trigeminal subnucleus caudalis activation of either NK1 or NMDA receptors alone induces Fos expression; protein kinases A and C are involved in NK1R-induced Fos while protein kinase A is not required for NMDA receptor-induced Fos.
机译:活动诱导的神经元可塑性在一定程度上受到了早期基因c-fos的表达以及由此产生的转录因子Fos的促进。 Fos的表达与伤害感受传入激活有关,但是在三叉神经系统中尚未确定Fos表达的详细刺激转录途径。这项研究利用一种新型的体外模型来确定是否可以通过NMDA或神经激肽1受体激活在三叉神经尾核中诱导Fos表达,以及抑制细胞内激酶对这些受体的激活诱导的Fos表达是否有任何影响。切除雄性Wistar大鼠的脑干并将其保持在37℃的人工脑脊液中。应用NMDA或特定的神经激肽-1受体激动剂[Sar〜9.Met(O_2)〜(11)]-SP。随后在蛋白激酶A抑制剂Rp-cAMP或蛋白激酶C抑制剂白屈菜红碱氯化物存在下测试这些激动剂。在所有实验中,钠通道阻滞剂河豚毒素均用于防止间接神经元活化。对脑干进行免疫细胞化学处理以表达Fos,并在尾端三叉神经核下计数阳性细胞。 NMDA和[Sar〜9.Met(O_2)〜(11)]-SP显着增加了Fos表达,但这些增加可以被白屈菜红碱氯化物阻止。 Rp-cAMP对NMDA诱导的Fos无影响,但引起[Sar〜9,Met(O_2)〜(11)]-SP诱导的Fos显着降低。这些数据表明,在三叉神经尾核中,单独激活NK1或NMDA受体可诱导Fos表达。蛋白激酶A和C参与NK1R诱导的Fos,而NMDA受体诱导的Fos则不需要蛋白激酶A。

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