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胰岛β细胞中膜电位对葡萄糖的振荡反应:小鼠和大鼠胰岛细胞电活动的比较。

Oscillatory membrane potential response to glucose in islet beta-cells: a comparison of islet-cell electrical activity in mouse and rat.

作者信息

Manning Fox Jocelyn E, Gyulkhandanyan Armen V, Satin Leslie S, Wheeler Michael B

机构信息

Department of Physiology, University of Toronto, Ontario, Canada M5S 1A8.

出版信息

Endocrinology. 2006 Oct;147(10):4655-63. doi: 10.1210/en.2006-0424. Epub 2006 Jul 20.

Abstract

In contrast to mouse, rat islet beta-cell membrane potential is reported not to oscillate in response to elevated glucose despite demonstrated oscillations in calcium and insulin secretion. We aim to clarify the electrical activity of rat islet beta-cells and characterize and compare the electrical activity of both alpha- and beta-cells in rat and mouse islets. We recorded electrical activity from alpha- and beta-cells within intact islets from both mouse and rat using the perforated whole-cell patch clamp technique. Fifty-six percent of both mouse and rat beta-cells exhibited an oscillatory response to 11.1 mm glucose. Responses to both 11.1 mm and 2.8 mm glucose were identical in the two species. Rat beta-cells exhibited incremental depolarization in a glucose concentration-dependent manner. We also demonstrated electrical activity in human islets recorded under the same conditions. In both mouse and rat alpha-cells 11 mm glucose caused hyperpolarization of the membrane potential, whereas 2.8 mm glucose produced action potential firing. No species differences were observed in the response of alpha-cells to glucose. This paper is the first to demonstrate and characterize oscillatory membrane potential fluctuations in the presence of elevated glucose in rat islet beta-cells in comparison with mouse. The findings promote the use of rat islets in future electrophysiological studies, enabling consistency between electrophysiological and insulin secretion studies. An inverse response of alpha-cell membrane potential to glucose furthers our understanding of the mechanisms underlying glucose sensitive glucagon secretion.

摘要

与小鼠不同,尽管大鼠胰岛β细胞膜电位在钙离子和胰岛素分泌方面表现出振荡,但据报道其对葡萄糖升高不产生振荡反应。我们旨在阐明大鼠胰岛β细胞的电活动,并对大鼠和小鼠胰岛中α细胞和β细胞的电活动进行表征和比较。我们使用穿孔全细胞膜片钳技术记录了来自小鼠和大鼠完整胰岛内α细胞和β细胞的电活动。56%的小鼠和大鼠β细胞对11.1 mM葡萄糖表现出振荡反应。两种动物对11.1 mM和2.8 mM葡萄糖的反应相同。大鼠β细胞以葡萄糖浓度依赖性方式表现出逐渐去极化。我们还展示了在相同条件下记录的人胰岛的电活动。在小鼠和大鼠的α细胞中,11 mM葡萄糖导致膜电位超极化,而2.8 mM葡萄糖则引发动作电位发放。在α细胞对葡萄糖的反应中未观察到种属差异。本文首次证明并表征了与小鼠相比,大鼠胰岛β细胞在葡萄糖升高时振荡性膜电位波动的情况。这些发现促进了大鼠胰岛在未来电生理研究中的应用,使电生理研究与胰岛素分泌研究保持一致。α细胞膜电位对葡萄糖的反向反应进一步加深了我们对葡萄糖敏感型胰高血糖素分泌潜在机制的理解。

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