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胰腺β细胞间隙连接原位电导的大小与调节

Magnitude and modulation of pancreatic beta-cell gap junction electrical conductance in situ.

作者信息

Mears D, Sheppard N F, Atwater I, Rojas E

机构信息

Department of Biomedical Engineering, Johns Hopkins University School of Medicine, Baltimore, MD 21218, USA.

出版信息

J Membr Biol. 1995 Jul;146(2):163-76. doi: 10.1007/BF00238006.

Abstract

The parallel gap junction electrical conductance between a beta-cell and its nearest neighbors was measured by using an intracellular microelectrode to clamp the voltage of a beta-cell within a bursting islet of Langerhans. The holding current records consisted of bursts of inward current due to the synchronized oscillations in membrane potential of the surrounding cells. The membrane potential record of the impaled cell, obtained in current clamp mode, was used to estimate the behavior of the surrounding cells during voltage clamp, and the coupling conductance was calculated by dividing the magnitude of the current bursts by that of the voltage bursts. The histogram of coupling conductance magnitude from 26 cells was bimodal with peaks at 2.5 and 3.5 nS, indicating heterogeneity in extent of electrical communication within the islet of Langerhans. Gap junction conductance reversibly decreased when the temperature was lowered from 37 to 30 degrees C and when the extracellular calcium concentration was raised from 2.56 to 7.56 mM. The coupling conductance decreased slightly during the active phase of the burst. Activation of adenylate cyclase with forskolin (10 microM) resulted in an increase in cell-to-cell electrical coupling. We conclude that beta-cell gap junction conductance can be measured in situ under near physiological conditions. Furthermore, the magnitude and physiological regulation of beta-cell gap junction conductance suggest that intercellular electrical communication plays an important role in the function of the endocrine pancreas.

摘要

通过使用细胞内微电极钳制朗格汉斯胰岛中处于爆发状态的β细胞的电压,测量了β细胞与其最近邻细胞之间的平行缝隙连接电导。保持电流记录由周围细胞膜电位同步振荡引起的内向电流爆发组成。在电流钳模式下获得的刺入细胞的膜电位记录用于估计电压钳制期间周围细胞的行为,耦合电导通过将电流爆发的幅度除以电压爆发的幅度来计算。来自26个细胞的耦合电导幅度直方图呈双峰分布,峰值分别在2.5和3.5 nS,表明朗格汉斯岛内电通信程度存在异质性。当温度从37℃降至30℃以及细胞外钙浓度从2.56 mM升至7.56 mM时,缝隙连接电导可逆性降低。在爆发的活跃期,耦合电导略有下降。用福司可林(10 μM)激活腺苷酸环化酶导致细胞间电耦合增加。我们得出结论,β细胞缝隙连接电导可以在接近生理条件下原位测量。此外,β细胞缝隙连接电导的大小和生理调节表明,细胞间电通信在内分泌胰腺的功能中起重要作用。

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