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Release of glutamate and CGRP from trigeminal ganglion neurons: Role of calcium channels and 5-HT1 receptor signaling

机译:三叉神经节神经元释放谷氨酸和CGRP:钙通道和5-HT 1 受体信号传导的作用

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Background The aberrant release of the neurotransmitters, glutamate and calcitonin-gene related peptide (CGRP), from trigeminal neurons has been implicated in migraine. The voltage-gated P/Q-type calcium channel has a critical role in controlling neurotransmitter release and has been linked to Familial Hemiplegic Migraine. Therefore, we examined the importance of voltage-dependent calcium channels in controlling release of glutamate and CGRP from trigeminal ganglion neurons isolated from male and female rats and grown in culture. Serotonergic pathways are likely involved in migraine, as triptans, a class of 5-HT1 receptor agonists, are effective in the treatment of migraine and their effectiveness may be due to inhibiting neurotransmitter release from trigeminal neurons. We also studied the effect of serotonin receptor activation on release of glutamate and CGRP from trigeminal neurons grown in culture. Results P/Q-, N- and L-type channels each mediate a significant fraction of potassium-stimulated release of glutamate and CGRP. We determined that 5-HT significantly inhibits potassium-stimulated release of both glutamate and CGRP. Serotonergic inhibition of both CGRP and glutamate release can be blocked by pertussis toxin and NAS-181, a 5-HT1B/1D antagonist. Stimulated release of CGRP is unaffected by Y-25130, a 5-HT3 antagonist and SB 200646, a 5-HT2B/2C antagonist. Conclusion These data suggest that release of both glutamate and CGRP from trigeminal neurons is controlled by calcium channels and modulated by 5-HT signaling in a pertussis-toxin dependent manner and probably via 5-HT1 receptor signaling. This is the first characterization of glutamate release from trigeminal neurons grown in culture.
机译:背景技术从三叉神经元异常释放神经递质,谷氨酸和降钙素基因相关肽(CGRP)涉及偏头痛。电压门控的P / Q型钙通道在控制神经递质的释放中起关键作用,并与家族性偏瘫性偏头痛有关。因此,我们检查了电压依赖性钙通道在控制从雄性和雌性大鼠中分离并在培养物中生长的三叉神经节神经元释放谷氨酸和CGRP的重要性。血清素能通路可能与偏头痛有关,因为曲普坦是一类5-HT1受体激动剂,可有效治疗偏头痛,其功效可能是由于抑制了三叉神经元释放神经递质。我们还研究了5-羟色胺受体激活对培养物中三叉神经元释放谷氨酸和CGRP的影响。结果P / Q,N和L型通道各自介导钾刺激的谷氨酸和CGRP释放的很大一部分。我们确定5-HT显着抑制谷氨酸和CGRP的钾刺激释放。 CGRP和谷氨酸盐释放的血清素抑制均可以被百日咳毒素和5-HT1B / 1D拮抗剂NAS-181阻断。 CGRP的刺激释放不受5-HT3拮抗剂Y-25130和5-HT2B / 2C拮抗剂SB 200646的影响。结论这些数据表明,三叉神经元中谷氨酸和CGRP的释放受钙通道的控制,并以百日咳毒素依赖性方式(可能通过5-HT1受体信号传导)受5-HT信号传导调节。这是培养物中三叉神经元释放谷氨酸的第一个特征。

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