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氯化铯对胰腺β细胞胰岛素释放、离子通量及膜电位的影响。

The effects of cesium chloride on insulin release, ionic fluxes and membrane potential in pancreatic B-cells.

作者信息

Paolisso G, Nenquin M, Meissner H P, Henquin J C

出版信息

Biochim Biophys Acta. 1985 Feb 21;844(2):200-8. doi: 10.1016/0167-4889(85)90091-6.

Abstract

Cs+ decreases K+ permeability in nerve and muscle cells. Its effects on the pancreatic B-cell function were studied with mouse islets. In the presence of 3 mM glucose, Cs+ substitution for K+ steadily inhibited 86Rb+ efflux and hyperpolarized the B-cell membrane. Addition of Cs+ to a K+-medium also inhibited 86Rb+ efflux, but depolarized the B-cell membrane. None of these changes altered insulin release. Substitution of Cs+ for K+ in a medium containing 10 mM glucose caused a Ca2+-dependent stimulation of insulin release and 45Ca2+ efflux, produced an initial fall and a secondary rise in 86Rb+ efflux and augmented the electrical activity in B-cells. Reintroduction of K+ to the medium was followed by a marked and transient inhibition of insulin release, that was blocked by ouabain and accompanied by an inhibition of 45Ca2+ and 86Rb+ efflux and by a hyperpolarization of the B-cell membrane. Addition of Cs+ to a K+ medium containing 10 mM glucose stimulated insulin release, 45Ca2+ efflux and 86Rb+ efflux. It also increased the electrical activity in B-cells. In the absence of Ca2+, however, Cs+ addition decreased the rate of 86Rb+ efflux. The effects of Cs+ on the B-cell function may be explained by its ability to decrease K+ permeability of the plasma membrane, by its inability to activate the sodium pump, and by a third unidentified effect likely brought about by the accumulation of intracellular Cs+.

摘要

铯离子降低神经和肌肉细胞中的钾离子通透性。用小鼠胰岛研究了其对胰腺β细胞功能的影响。在3 mM葡萄糖存在的情况下,用铯离子替代钾离子可稳定抑制86Rb+外流并使β细胞膜超极化。向钾离子培养基中添加铯离子也会抑制86Rb+外流,但会使β细胞膜去极化。这些变化均未改变胰岛素释放。在含有10 mM葡萄糖的培养基中用铯离子替代钾离子会引起钙离子依赖性的胰岛素释放和45Ca2+外流刺激,使86Rb+外流先下降后上升,并增强β细胞的电活动。重新向培养基中加入钾离子后,胰岛素释放会受到明显且短暂的抑制,这种抑制被哇巴因阻断,同时伴有45Ca2+和86Rb+外流的抑制以及β细胞膜的超极化。向含有10 mM葡萄糖的钾离子培养基中添加铯离子会刺激胰岛素释放、45Ca2+外流和86Rb+外流。它还会增加β细胞的电活动。然而,在无钙离子的情况下,添加铯离子会降低86Rb+外流速率。铯离子对β细胞功能的影响可能是由于其降低质膜钾离子通透性的能力、无法激活钠泵以及可能由细胞内铯离子积累引起的第三种未明确的作用。

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