Oxford Centre for Diabetes, Endocrinology and Metabolism, University of Oxford, Churchill Hospital, Oxford OX3 7LJ, UK.
Diabetes Obes Metab. 2011 Oct;13 Suppl 1:95-105. doi: 10.1111/j.1463-1326.2011.01450.x.
Glucagon secretion is regulated by glucose but the mechanisms involved remain hotly debated. Both intrinsic (within the α-cell itself) and paracrine (mediated by factors released β- and/or δ-cells) have been postulated. Glucagon secretion is maximally suppressed by glucose concentrations that do not affect insulin and somatostatin secretion, a finding that highlights the significance of intrinsic regulation of glucagon secretion. Experiments on islets from mice lacking functional ATP-sensitive potassium channels (K(ATP)-channels) indicate that these channels are critical to the α-cell's capacity to sense changes in extracellular glucose. Here, we review recent data on the intrinsic and paracrine regulation of glucagon secretion in human pancreatic islets. We propose that glucose-induced closure of the K(ATP)-channels, via membrane depolarization, culminates in reduced electrical activity and glucagon secretion by voltage-dependent inactivation of the ion channels involved in action potential firing. We further demonstrate that glucagon secretion measured in islets isolated from donors with type-2 diabetes is reduced at low glucose and that glucose stimulates rather than inhibits secretion in these islets. We finally discuss the relative significance of paracrine and intrinsic regulation in the fed and fasted states and propose a unifying model for the regulation of glucagon secretion that incorporates both modes of control.
胰高血糖素的分泌受葡萄糖调控,但其中涉及的机制仍存在很大争议。目前推测有内在(胰岛细胞自身)和旁分泌(由β-和/或δ-细胞释放的因子介导)两种机制。葡萄糖浓度不会影响胰岛素和生长抑素的分泌,但能最大程度地抑制胰高血糖素的分泌,这一发现突出了内在调控胰高血糖素分泌的重要性。实验表明,缺乏功能性三磷酸腺苷敏感性钾通道(KATP-通道)的小鼠胰岛中的这些通道对于胰岛细胞感知细胞外葡萄糖变化的能力至关重要。在这里,我们回顾了最近关于人胰岛中胰高血糖素分泌的内在和旁分泌调控的研究数据。我们提出,葡萄糖诱导的 KATP 通道关闭通过去极化导致参与动作电位产生的离子通道失活,从而减少电活动和胰高血糖素的分泌。我们进一步证明,从 2 型糖尿病供体中分离的胰岛中,在低血糖时胰高血糖素的分泌减少,而在这些胰岛中,葡萄糖刺激而不是抑制分泌。我们最后讨论了在进食和禁食状态下旁分泌和内在调控的相对重要性,并提出了一个将这两种调控方式结合起来的统一模型,用于调控胰高血糖素的分泌。