首页> 美国卫生研究院文献>The Journal of Physiology >In vivo synchronous membrane potential oscillations in mouse pancreatic beta-cells: lack of co-ordination between islets.
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In vivo synchronous membrane potential oscillations in mouse pancreatic beta-cells: lack of co-ordination between islets.

机译:小鼠胰腺β细胞的体内同步膜电位振荡:胰岛之间缺乏协调。

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摘要

1. The properties of the oscillations in electrical activity of different beta-cells within the same islet of Langerhans, and of different islets within the same pancreas, recorded in vivo, are described. 2. Simultaneous recordings of two cells within the same islet showed that the oscillations were synchronous. A rapid increase in blood glucose led to the simultaneous appearance of a transitory phase of continuous electrical activity in both cells. These results indicate that under physiological conditions, the islets operate as a functional syncytium. 3. Simultaneous recordings of cells from two different islets within the same pancreas showed that the oscillations in the electrical activity were not synchronous, which suggests that each islet is a functionally independent unit. Rapid changes in blood glucose led to the appearance of a transitory phase of increased electrical activity in both islets, although of different duration. These results suggest that the endocrine pancreas lacks a pacemaker driving the electrical activity of all the islets. 4. The comparison of the degree of activation of different islets, simultaneously recorded at different glucose concentrations, indicated that all the islets had a similar sensitivity to glucose. Furthermore, when the glucose concentration was increased, the electrical activity in both islets increased in parallel, suggesting that the amount of insulin released due to the increase in glycaemia was produced by the simultaneous response of all the islets and not by the recruitment of islets with different sensitivities to glucose. 5. Our results predict that the synchronous electrical activity of all the cells within an islet will result in widespread intracellular calcium oscillations and pulsatile insulin secretion. The periodicity of the pulses of insulin secretion in different islets is suggested to be of slightly different length and asynchronous.
机译:1.描述了体内记录的朗格汉斯同一个胰岛内不同β细胞和同一胰腺内不同胰岛的电活动振荡特性。 2.在同一个胰岛中同时记录两个细胞表明振荡是同步的。血糖的快速升高导致在两个细胞中同时出现连续电活动的过渡期。这些结果表明,在生理条件下,胰岛作为功能合胞体起作用。 3.同时记录同一胰腺内两个不同胰岛的细胞表明,电活动的振荡不是同步的,这表明每个胰岛都是功能独立的单元。血糖的快速变化导致两个胰岛均出现电活动增加的过渡期,尽管持续时间不同。这些结果表明,内分泌胰腺缺乏起搏器来驱动所有胰岛的电活动。 4.比较不同胰岛的活化程度,同时记录在不同的葡萄糖浓度下,表明所有胰岛对葡萄糖的敏感性相似。此外,当葡萄糖浓度增加时,两个胰岛中的电活动平行增加,这表明由于血糖升高而释放的胰岛素量是由所有胰岛的同时反应产生的,而不是由胰岛的补充引起的。对葡萄糖的敏感性不同。 5.我们的结果预测,胰岛中所有细胞的同步电活动将导致广泛的细胞内钙振荡和搏动性胰岛素分泌。建议不同胰岛中胰岛素分泌脉冲的周期长度略有不同,并且是异步的。

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