Ashby J P, Speake R N
Biochem J. 1975 Jul;150(1):89-96.
The role of Ca2+ in the secretion of insulin and glucagon was investigated by studying the effects of Ca2+ ionophores on hormone secretion from isolated perifused islets of Langerhans. Ionophore X537A (100 muM), which binds alkaline earth cations and also complexes some univalent cations, caused a rapid transient increase in insulin and glucagon secretion which was not dependent on the presence of Ca2+ in the perifusion medium. Ionophore A23187 (100 muM), which specifically binds bivalent cations at neutral pH values, similarly increased insulin secretion in complete and Ca2+-free medium, but only stimulated glucagon release in the presence of extracellular Ca2+. Since the stimulatory effects of both ionophores were associated with an increased Ca2+ flux in the islets, these experiments support the hypothesis that Ca2+ may trigger the release of insulin and suggest that it is also involved in the secretion of glucagon. The basal rate of both insulin and glucagon release was significantly increased when Ca2+ was omitted from the perifusion medium, but it is proposed that this finding may be due to adverse effects on cell-membrane function under these conditions.
通过研究钙离子载体对分离的经灌注的胰岛细胞激素分泌的影响,探讨了钙离子在胰岛素和胰高血糖素分泌中的作用。离子载体X537A(100μM)能结合碱土金属阳离子,也能络合一些单价阳离子,它能引起胰岛素和胰高血糖素分泌迅速短暂增加,且不依赖于灌注培养基中钙离子的存在。离子载体A23187(100μM)在中性pH值下特异性结合二价阳离子,在完全培养基和无钙培养基中同样增加胰岛素分泌,但仅在细胞外钙离子存在时刺激胰高血糖素释放。由于两种离子载体的刺激作用都与胰岛中钙离子通量增加有关,这些实验支持钙离子可能触发胰岛素释放的假说,并表明它也参与胰高血糖素的分泌。当灌注培养基中省略钙离子时,胰岛素和胰高血糖素的基础释放率显著增加,但有人提出,这一发现可能是由于在这些条件下对细胞膜功能的不利影响。