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Some New Observations on Caffeine-Induced Rhythmic Hyperpolarization in Frog Sympathetic Ganglion Cells

机译:咖啡因诱导青蛙交感神经节细胞节律性超极化的一些新观察

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References(31) Cited-By(1) Unstimulated bullfrog sympathetic ganglia were studied in vitro by intracellular and extracellular recording methods. In 80% of the cells impaled with K citrate microelectrodes, caffeine caused initial hyperpolarization (ICH) followed by rhythmic membrane hyperpolarization (RMH). Four different patterns of rhythmicity were observed, the most common being a regular beating pattern. RMH frequency depended on both caffeine and Ca2+ Tetraethylammonium reduced RMH amplitude, but did not affect frequency. Caffeine effects on cyclic AMP are not responsible for RMH since neither dibutyryl cyclic AMP nor phosphodiesterase inhibitors elicited RMH. However, the anion in the microelectrode filling solution is critical to both the incidence and amplitude of RMH, the order of effectiveness being: citrate glutamate, acetate and chloride. In cells impaled by electrodes filled with K thiocyanate or K iodide, caffeine also caused large amplitude hyperpolarizing oscillations of membrane potential, suggesting that the effectiveness of citrate is not due to Ca2+ chelation. High gain extracellular DC recording revealed no sign of caffeine ICH, RMH or any hyperpolarizing effets. The absence of signs of caffeine hyperpolarization with extracellular recording has several interpretations, and these are discussed.
机译:参考文献(31)被引(1)通过细胞内和细胞外记录方法对未刺激的牛蛙交感神经节进行了体外研究。在80%的柠檬酸钾微电极刺穿的细胞中,咖啡因引起初始超极化(ICH),然后是有节奏的膜超极化(RMH)。观察到四种不同的节律模式,最常见的是规则的跳动模式。 RMH频率取决于咖啡因和Ca2 +四乙铵可降低RMH幅度,但不影响频率。咖啡因对环状AMP的作用与RMH不相关,因为二丁酰基环状AMP和磷酸二酯酶抑制剂均未引起RMH。然而,微电极填充溶液中的阴离子对于RMH的发生率和幅度均至关重要,其有效顺序为:柠檬酸>谷氨酸,乙酸盐和氯化物。在充满硫氰酸钾或碘化钾的电极刺穿的细胞中,咖啡因还引起膜电位的大幅度超极化振荡,这表明柠檬酸盐的有效性并非由于Ca2 +螯合。高增益细胞外DC记录显示没有咖啡因ICH,RMH或任何超极化效应的迹象。没有咖啡因超极化迹象的细胞外记录的迹象有几种解释,并进行了讨论。

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