Henquin J C, Jonas J C, Gilon P
Unité d'Endocrinologie et Métabolisme, Faculty of Medicine University of Louvain, Brussels, Belgium.
Diabetes Metab. 1998 Feb;24(1):30-6.
Several aspects of pancreatic beta cell function display marked oscillations even during continuous stimulation with a stable glucose concentration. This review article focuses on the characteristics, mechanisms and potential roles of the oscillations of cytoplasmic Ca2+ concentration [(Ca2+]i) in beta cells. These oscillations result from an intermittent influx of Ca2+ through voltage-dependent Ca2+ channels activated by periodic depolarizations of the plasma membrane. In each islet, [Ca2+]i oscillations are synchronous in all beta cells and trigger similar oscillations of insulin secretion. Changes in [Ca2+]i are thought to play a minute-to-minute regulatory role in secretion, but the effectiveness of Ca2+ on the secretory process is markedly influenced by various amplification mechanisms. It is still unclear whether the oscillations of [Ca2+]i reflect functional advantages for the beta cell itself or are simply necessary to ensure oscillations of plasma insulin levels through pulsatile secretion of the hormone.
即使在稳定葡萄糖浓度的持续刺激下,胰腺β细胞功能的几个方面也表现出明显的振荡。这篇综述文章重点关注β细胞中细胞质Ca2+浓度[Ca2+]i振荡的特征、机制和潜在作用。这些振荡是由Ca2+通过质膜周期性去极化激活的电压依赖性Ca2+通道间歇性内流引起的。在每个胰岛中,所有β细胞中的[Ca2+]i振荡都是同步的,并触发胰岛素分泌的类似振荡。[Ca2+]i的变化被认为在分泌过程中起着每分钟的调节作用,但Ca2+对分泌过程的有效性受到各种放大机制的显著影响。目前尚不清楚[Ca2+]i的振荡是反映β细胞自身的功能优势,还是仅仅是通过激素的脉冲分泌来确保血浆胰岛素水平振荡所必需的。