首页> 外文期刊>The Journal of Physiology >Serotonin suppresses the slow afterhyperpolarization in rat intralaminar and midline thalamic neurones by activating 5-HT(7) receptors.
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Serotonin suppresses the slow afterhyperpolarization in rat intralaminar and midline thalamic neurones by activating 5-HT(7) receptors.

机译:5-羟色胺通过激活5-HT(7)受体抑制大鼠椎板内和中线丘脑神经元的缓慢超极化。

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While the highest expression level of 5-HT(7) receptors in the brain is observed in intralaminar and midline thalamic neurones, the physiological role of these receptors in this structure is unknown. In vivo recordings have shown that stimulation of the serotonergic raphe nuclei can alter the response of these neurones to a nociceptive stimulus, suggesting that serotonin modulates their firing properties. Using the patch-clamp technique in rat thalamic brain slices, we demonstrate that activation of 5-HT(7) receptors can strongly modulate the excitability of intralaminar and midline thalamic neurones by inhibiting the calcium-activated potassium conductance that is responsible for the slow afterhyperpolarization (sAHP) following a spike discharge. This sAHP was inhibited after activation of the cAMP pathway, either by bath application of forskolin or intracellular perfusion with 8-bromo-cAMP. The inhibitory effect of 5-HT(7) receptors on sAHPs was blocked by the protein kinase A antagonist R(P)-cAMPS. Calcium-imaging experiments showed no change in intracellular calcium levels during the 5-HT(7) response, indicating that in these neurones, a global calcium signal was not necessary to activate the cAMP cascade. Finally, bath application of serotonin produced a strong increase in cytosolic cAMP concentration, as measured using the fluorescent probe FlCRhR, and an inhibition of the sAHP. Taken together, these results suggest that 5-HT(7) receptors are implicated in the effect of 5-HT on sAHP in intralaminar and midline thalamic neurones, an effect that is mediated by the cAMP second-messenger cascade.
机译:虽然在层内和中线丘脑神经元中观察到了脑中5-HT(7)受体的最高表达水平,但这些受体在这种结构中的生理作用尚不清楚。体内记录显示,对5-羟色胺类神经核的刺激可以改变这些神经元对伤害性刺激的反应,这表明5-羟色胺调节其放电特性。在大鼠丘脑脑片中使用膜片钳技术,我们证明了5-HT(7)受体的激活可以通过抑制钙激活的钾电导来强烈调节层内和中线丘脑神经元的兴奋性。 (sAHP)峰值放电后。激活cAMP途径后,该sAHP被抑制,无论是通过浸入福司可林还是使用8-溴-cAMP进行细胞内灌注。 5-HT(7)受体对sAHPs的抑制作用被蛋白激酶A拮抗剂R(P)-cAMPS阻断。钙成像实验显示5-HT(7)反应期间细胞内钙水平没有变化,表明在这些神经元中,全局钙信号不是激活cAMP级联所必需的。最后,如使用荧光探针FlCRhR所测量的,应用5-羟色胺的浴液可显着提高细胞内cAMP的浓度,并抑制sAHP。综上所述,这些结果表明5-HT(7)受体与5-HT对层内和中线丘脑神经元中sAHP的作用有关,该作用由cAMP第二信使级联介导。

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