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Oscillation of gap junction electrical coupling in the mouse pancreatic islets of Langerhans.

机译:朗格汉斯小鼠胰岛中间隙连接电耦合的振荡。

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1. Pancreatic beta-cells oscillate synchronously when grouped in islets. Coupling seems essential to maintain this oscillatory behaviour, as isolated cells are unable to oscillate. This allows the islet to be used as a model system for studying the role of coupling in the generation of oscillatory patterns. 2. Pairs of beta-cells were intracellularly recorded in islets. beta-Cells oscillated synchronously. Propagated voltage deflections were observed as a function of glucose concentration and of the distance between the recording electrodes. Space constants were smaller in the silent than in the active phases, suggesting a higher intercellular connection in the active phases. 3. Coupling coefficients and estimated coupling conductances were larger in the active than in the silent phases. 4. Coupling coefficients and coupling conductances changed dynamically and in phase with the membrane potential oscillations, pointing to an active modulation of the gap junctions. 5. We hypothesize a role for couplingin the generation of the oscillatory events, providing different levels of permeability dependent on the state of conductance during the oscillatory phases.
机译:1.胰岛β细胞在胰岛中分组时同步振荡。耦合似乎对于维持这种振荡行为至关重要,因为分离的细胞无法振荡。这允许将胰岛用作模型系统,以研究耦合在振荡模式生成中的作用。 2.在胰岛中细胞内记录成对的β细胞。 β细胞同步振荡。观察到传播的电压偏转是葡萄糖浓度和记录电极之间距离的函数。静默期的空间常数小于活性期的空间常数,表明活性期的细胞间连接较高。 3.主动阶段的耦合系数和估计的耦合电导要大于无声阶段。 4.耦合系数和耦合电导随膜电位振荡动态变化并且同相变化,这表明间隙结的有效调制。 5.我们假设在振荡事件的发生中具有耦合作用,根据振荡阶段的电导状态提供不同水平的磁导率。

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