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首页> 外文期刊>FEBS Letters >Effects of hypothalamic peptides on electrical activity and membrane currents of ‘patch perforated’ clamped GH3 anterior pituitary cells
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Effects of hypothalamic peptides on electrical activity and membrane currents of ‘patch perforated’ clamped GH3 anterior pituitary cells

机译:下丘脑肽对“膜片穿孔”的GH3垂体前叶细胞电活动和膜电流的影响

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>‘Perforated-patch’ recordings of rat anterior pituitary GH, cells allow long and stable monitoring of electrical activity and membrane currents. Under current clamp conditions, the biphasic effect of thryotropin releasing hormone (TRH) consisting of a transient hyperpolarization followed by a longer phase of increased action potential frequency is fully preserved. Somatostatin suppresses action potential activity and antagonizes the second phase of enhanced spiking caused by TRH. Voltage clamp records of isolated currents indicate that TRH affects calcim-dependent potassium currents, but does not alter either voltage-dependent potassium or calcium currents at times and concentrations at which the electrical activity is increased.
机译:>大鼠垂体前叶GH的“穿孔修补”记录可以长期稳定地监测电活动和膜电流。在目前的钳制条件下,促甲状腺激素释放激素(TRH)的两相作用得以完全保留,该作用包括短暂的超极化,随后是较长的动作电位频率升高。生长抑素抑制动作电位活性并拮抗由TRH引起的增强突波的第二阶段。隔离电流的电压钳位记录表明,TRH影响钙离子依赖性钾电流,但不会改变电活动增加的时间和浓度,而不会改变电压依赖性钾电流或钙电流。

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