Dawson C M, Atwater I, Rojas E
J Membr Biol. 1982;64(1-2):33-43. doi: 10.1007/BF01870766.
Insulin release and membrane potential fluctuations in response to increased extracellular potassium [K+]o have been measured in single perifused islets of Langerhans from normal mice. An increase in [K+]o from 5 mM to 50 mM induced a transient insulin release with a peak at about 1 min. The peak value was [K+]o-dependent but the half-time t1/2 for the decline was constant at nearly 1 min. 2.5 mM cobalt completely inhibited the potassium-induced stimulation of insulin release. The insulin release elicited by 28 and 50 mM [K+]o was similar in terms of peak, total release and half-time from maximum release. Stepwise increase in [K+]o from 10 to 28 to 50 mM resulted in a normal response to 28 mM but no peak of release after the 28 to 50 mM increase. The results indicate good correlation between excess voltage noise, thought to reflect calcium channel activity, and insulin release evoked by changing extracellular potassium.
在来自正常小鼠的单个灌流胰岛中,已测量了对细胞外钾离子浓度([K⁺]o)升高的胰岛素释放和膜电位波动情况。[K⁺]o从5 mM增加到50 mM会诱导短暂的胰岛素释放,在约1分钟时达到峰值。峰值取决于[K⁺]o,但下降的半衰期t1/2几乎恒定在1分钟。2.5 mM钴完全抑制了钾诱导的胰岛素释放刺激。由28 mM和50 mM [K⁺]o引发的胰岛素释放在峰值、总释放量以及从最大释放量开始下降的半衰期方面相似。[K⁺]o从10 mM逐步增加到28 mM再到50 mM,对28 mM有正常反应,但在从28 mM增加到50 mM后没有释放峰值。结果表明,被认为反映钙通道活性的过量电压噪声与细胞外钾离子变化引起的胰岛素释放之间具有良好的相关性。