首页> 外文期刊>Japanese Journal of Pharmacology >Ryanodine Suppresses the Frequency-Dependent Component of the Spike After-Hyperpolarization in the Rat Superior Cervical Ganglion
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Ryanodine Suppresses the Frequency-Dependent Component of the Spike After-Hyperpolarization in the Rat Superior Cervical Ganglion

机译:Ryanodine抑制大鼠上颈神经节穗超极化后的频率依赖性成分。

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References(23) Cited-By(4) The spike after-hyperpolarization (AH), which is linked to the Ca-activated K conductance system, in the rat superior cervical ganglion was examined by means of intracellular recording. The AH was shortened during repetitive stimulation of the cell at 1 Hz and reached a steady state within 10 sec. These changes in the AH disappeared after a part of the AH was depressed by 5μM ryanodine. The steady state of AHs was dependent on the frequency of stimulation ranging from 0.005 Hz and 2 Hz; half depression was observed at 0.53 Hz. Half recovery time from the depression induced by conditioning stimuli at 2 Hz was approximately 14 sec. Caffeine (1 mM) or TEA (3 mM) enlarged the AH at low stimulation frequencies. Caffeine slightly shifted the frequency depressing the AH toward high frequencies, and TEA did not cause significant changes. These results suggest that the repetitive firing of cells decreases the intracellular Ca release by contributing to the generation of the AH, rather than by accelerating the loading of Ca to its storage sites.
机译:参考文献(23)被引用的By(4)通过细胞内记录检查了大鼠上颈神经节中与Ca激活的K电导系统相关的超极化后的尖峰(AH)。在以1 Hz的频率重复刺激细胞期间,AH缩短,并在10秒内达到稳态。在5μMryanodine抑制了一部分AH后,这些AH的变化消失了。 AHs的稳态取决于刺激频率,范围为0.005 Hz和2 Hz。在0.53Hz下观察到一半凹陷。由2 Hz的条件刺激引起的抑郁症的恢复时间约为14秒。咖啡因(1 mM)或TEA(3 mM)在低刺激频率下会扩大AH。咖啡因使抑制AH的频率向高频稍微移动,而TEA并未引起明显变化。这些结果表明,细胞的重复激发通过促进AH的产生而不是通过加速Ca向其储存位点的装载来减少细胞内Ca的释放。

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