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Thyrotropin-releasing-hormone (TRH) and its physiological metabolite TRH-OH inhibit Na+ channel activity in mammalian septal neurons

机译:促甲状腺激素释放激素(TRH)及其生理代谢产物TRH-OH抑制哺乳动物中隔神经元的Na +通道活性

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摘要

The interaction of thyrotropin-releasing hormone (TRH) and its physiological metabolite TRH-OH with Na+ channels was studied in enzymatically dissociated guinea pig septal neurons by using the whole-cell variant of the patch-clamp technique. In about 60% of the cells tested, the neuropeptides at concentrations between 0.01 and 2.5 ,uM produced a dose-dependent reversible attenuation of Na+ currents. With 2 ,uM TRH-OH, peak Na+ current amplitude was reduced by 20-50% (27 ± 8%, mean ± SD; n = 16), whereas at the same concentration TRH was approximately half as effective as TRH-OH. In the presence of the tripeptides, the voltage-dependent parameters of the Na+ current were unaltered. TRH-induced reduction of Na+ current amplitude was transient and recovered almost completely during maintained exposure to the peptides. In addition, the response to either TRH-OH or TRH decreased with repeated treatment. Our results demonstrate that neuronal Na+ channels can be modulated by naturally occurring neuropeptides.
机译:通过使用膜片钳技术的全细胞变体,在酶解离的豚鼠中隔神经元中研究了促甲状腺激素释放激素(TRH)及其生理代谢物TRH-OH与Na +通道的相互作用。在约60%的受试细胞中,浓度在0.01至2.5μM之间的神经肽产生剂量依赖性的Na +电流可逆衰减。使用2μMTRH-OH,峰值Na +电流幅度降低20-50%(27±8%,平均值±SD; n = 16),而在相同浓度下,TRH的有效性大约是TRH-OH的一半。在三肽存在下,Na +电流的电压依赖性参数不变。 TRH诱导的Na +电流幅度降低是短暂的,并且在维持暴露于肽的过程中几乎完全恢复。此外,对TRH-OH或TRH的反应随着重复治疗而降低。我们的结果表明,神经元Na +通道可以被天然存在的神经肽调节。

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