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葡萄糖诱导的小鼠胰岛细胞外离子化钾浓度的振荡变化。

Glucose-induced oscillatory changes in extracellular ionized potassium concentration in mouse islets of Langerhans.

作者信息

Perez-Armendariz E, Atwater I, Rojas E

出版信息

Biophys J. 1985 Nov;48(5):741-9. doi: 10.1016/S0006-3495(85)83832-7.

Abstract

Liquid membrane [K+]-sensitive microelectrodes (1-2 micron tip diameter) were used to measure the extracellular ionized potassium concentration in mouse pancreatic islets of Langerhans. With the tip of the microelectrode at the surface of the islet, the time course of the [K+]-sensitive electrode potential changes in response to the application of rapid changes in [K+]o (from 1.25 to 5 mM), could be reproduced by the equation for K+-diffusion through a 100-micron-thick unstirred layer around the islet (diffusion coefficient for K+ at 27 degrees C, DK,o, taken as 1.83 X 10(-5) cm2/s). The time to reach 63% of the steady-state electrode response with the tip in the chamber at the surface of the islet was from 5 to 6 s. When the tip of the [K+]-sensitive electrode was placed in the islet tissue, the time for the response to reach 63% of the steady-state level increased. The time course of the [K+]-sensitive electrode response could be reproduced using the same diffusion model assuming that K+ diffusion into the islet tissue takes place in a tortuous intercellular path with an apparent diffusion coefficient, DK,I, about half of DK,o, in series with the unstirred layer around the islet. In the absence of glucose the potassium concentration in the extracellular space, [K+]I, was found to be higher than the concentration in the external modified Krebs solution, [K+]o. The difference in concentration [K+]I - [K+]o was greater when [K+]o was smaller than 2 mM. In the presence of glucose (between 11 and 16 mM), under steady-state conditions, small oscillatory changes in the [K+], (1.48 +/- 0.94 mM) were detected. Simultaneous recording of membrane potential from one B-cell and [K+], in the same islet indicated that the potassium concentration increased during the active phase of the bursts of electrical activity. Maximum concentration in the intercellular was reached near the end of the active phase of the bursts. We propose that the space between islet cells constitutes a restricted diffusion system where potassium accumulates during the transient activation of potassium channels.

摘要

使用液膜[K⁺]敏感微电极(尖端直径1 - 2微米)测量小鼠胰岛朗格汉斯细胞外的离子化钾浓度。将微电极尖端置于胰岛表面时,[K⁺]敏感电极电位随[K⁺]ₒ(从1.25毫摩尔升至5毫摩尔)快速变化的时间进程,可由钾离子通过胰岛周围100微米厚的非搅拌层扩散的方程重现(27℃时钾离子的扩散系数Dₖ,ₒ取为1.83×10⁻⁵平方厘米/秒)。微电极尖端位于胰岛表面腔室中时,达到稳态电极响应63%所需时间为5至6秒。当[K⁺]敏感电极尖端置于胰岛组织中时,响应达到稳态水平63%的时间增加。[K⁺]敏感电极响应的时间进程可使用相同的扩散模型重现,假设钾离子向胰岛组织的扩散发生在曲折的细胞间路径中,其表观扩散系数Dₖ,ᵢ约为Dₖ,ₒ的一半,与胰岛周围的非搅拌层串联。在无葡萄糖的情况下,发现细胞外空间的钾浓度[K⁺]ᵢ高于外部改良克雷布斯溶液中的浓度[K⁺]ₒ。当[K⁺]ₒ小于2毫摩尔时,浓度差[K⁺]ᵢ - [K⁺]ₒ更大。在葡萄糖(11至16毫摩尔)存在的稳态条件下,检测到[K⁺]ₒ(1.48±0.94毫摩尔)有小的振荡变化。同时记录同一个胰岛中一个B细胞的膜电位和[K⁺]ₒ表明,钾浓度在电活动爆发的活跃期增加。细胞间的最大浓度在爆发活跃期接近结束时达到。我们提出,胰岛细胞之间的空间构成一个受限扩散系统,钾离子在钾通道短暂激活期间在此积累。

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