首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Cell coupling in mouse pancreatic beta-cells measured in intact islets of Langerhans
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Cell coupling in mouse pancreatic beta-cells measured in intact islets of Langerhans

机译:在朗格汉斯完整胰岛中测量的小鼠胰腺β细胞中的细胞偶联

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The perforated whole-cell configuration of the patch-clamp technique was applied to functionally identified beta-cells in intact mouse pancreatic islets to study the extent of cell coupling between adjacent beta-cells. Using a combination of current- and voltage-clamp recordings, the total gap junctional conductance between beta-cells in an islet was estimated to be 1.22 nS. The analysis of the current waveforms in a voltage-clamped cell ( due to the. ring of an action potential in a neighbouring cell) suggested that the gap junctional conductance between a pair of beta-cells was 0.17 nS. Subthreshold voltage-clamp depolarization (to -55 mV) gave rise to a slow capacitive current indicative of coupling between beta-cells, but not in non-beta-cells, with a time constant of 13.5 ms and a total charge movement of 0.2 pC. Our data suggest that a superficial beta-cell in an islet is in electrical contact with six to seven other beta-cells. No evidence for dye coupling was obtained when cells were dialysed with Lucifer yellow even when electrical coupling was apparent. The correction of the measured resting conductance for the contribution of the gap junctional conductance indicated that the whole-cell K-ATP channel conductance (G(K,ATP)) falls from approximately 2.5 nS in the absence of glucose to 0.1 nS at 15 mM glucose with an estimated IC50 of approximately 4 mM. Theoretical considerations indicate that the coupling between beta-cells within the islet is sufficient to allow propagation of [Ca2+](i) waves to spread with a speed of approximately 80 mu m s(-1), similar to that observed experimentally in confocal [Ca2+](i) imaging.
机译:膜片钳技术的穿孔全细胞配置应用于完整小鼠胰腺胰岛中功能鉴定的β细胞,以研究相邻β细胞之间的细胞偶联程度。使用电流钳和电压钳记录的组合,胰岛中β细胞之间的总间隙连接电导估计为1.22 nS。对电压钳位电池中电流波形的分析(由于相邻电池中的动作电位环)表明,一对β电池之间的间隙连接电导为0.17 nS。亚阈值电压钳位去极化(至-55 mV)产生了缓慢的电容电流,该电流表示β电池之间(而非非β电池)之间的耦合,其时间常数为13.5 ms,总电荷移动为0.2 pC 。我们的数据表明,胰岛中的浅层β细胞与六到七个其他β细胞发生电接触。当细胞用路西法黄透析时,即使有明显的电耦合,也没有获得染料耦合的证据。对间隙连接电导贡献的静息电导的校正表明,全细胞K-ATP通道电导(G(K,ATP))从葡萄糖不存在时的约2.5 nS下降到15 mM时的0.1 nS葡萄糖,估计IC50约为4 mM。理论上的考虑表明,胰岛内β细胞之间的耦合足以使[Ca2 +](i)波的传播以大约80μms(-1)的速度传播,这与共焦[Ca2 + ](i)成像。

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