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碳酸氢盐对哺乳动物骨骼肌静息电位的影响。

Effects of bicarbonate on resting potentials in mammalian skeletal muscle.

作者信息

Grossie J

出版信息

J Cell Physiol. 1985 Oct;125(1):115-21. doi: 10.1002/jcp.1041250115.

Abstract

In the absence of external HCO3, resting membrane potentials (Vm) in extensor digitorum longus muscle were depolarized as compared to the normal Vm in the presence of HCO3. Removal of Na or Cl form the HCO3-free media induced repolarization. In muscle in HCO3 buffer at 20 degrees C, internal K, Na, and Cl activities were analyzed with liquid ion selective microelectrodes. The averages were respectively, 119.7 +/- 2.1, 6.69 +/- 0.3, and 3.41 +/- 0.06 mM. In a high proportion of cells analyzed, the equilibrium potential for Cl was negative to Vm. Removing external HCO3, decreased internal K while internal Na and Cl increased. An increase in temperature and the application of HCO3 significantly lowered internal activities of both Na and Cl. Removal of HCO3 with temperature held constant caused a rapid depolarization, an increase in internal Na and Cl, and a decrease in internal K. Furosemide (10 microM) induced a repolarization of cells that were previously depolarized in the HCO3-free state, but the drug does not decrease internal Na.

摘要

在没有外部HCO₃的情况下,与存在HCO₃时的正常静息膜电位(Vm)相比,趾长伸肌的静息膜电位发生去极化。从无HCO₃的培养基中去除Na或Cl会导致复极化。在20℃的HCO₃缓冲液中的肌肉中,用液体离子选择性微电极分析内部K、Na和Cl的活性。平均值分别为119.7±2.1、6.69±0.3和3.41±0.06 mM。在分析的高比例细胞中,Cl的平衡电位相对于Vm为负。去除外部HCO₃会降低内部K,而内部Na和Cl增加。温度升高和应用HCO₃会显著降低Na和Cl的内部活性。在温度保持恒定的情况下去除HCO₃会导致快速去极化、内部Na和Cl增加以及内部K减少。呋塞米(10μM)可使先前在无HCO₃状态下去极化的细胞复极化,但该药物不会降低内部Na。

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