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藤壶肌肉中膜对二甲基辛二酸分子形式和离子形式的通透性。

Membrane permeability to the molecular and ionic forms of DMO in barnacle muscle.

作者信息

Keifer D W, Roos A

出版信息

Am J Physiol. 1981 Jan;240(1):C73-9. doi: 10.1152/ajpcell.1981.240.1.C73.

Abstract

The time course of the intracellular pH (pHi) of barnacle muscle fibers was followed using microelectrodes while the fibers were exposed to 15 mM of the weak acid 5,5-dimethyloxazolidine-2,4-dione (DMO) at pH 6.5. The rapid initial fall in pHi was used to determine the membrane permeability to the DMO molecule, while the much slower fall during the subsequent plateau phase yielded the permeability to the DMO ion. This experimental approach and the mathematical treatment of the data can be used to obtain the membrane permeabilities to other weak acids or bases. We found values of 1.9 X 10(-4) cm/s for the permeability to the DMO molecule and 1.5 X 10(-7) cm/s for the permeability to the ion, assuming the fiber to be a cylinder. Thus the permeability of the neutral form is about 10(3) times that of the ionized form. At commonly encountered conditions of pHi = 7.3, outside pH = 7.5, and membrane potential = -52 mV, this permeability ratio introduces an error of only -0.01 to -0.02 into the determination of pHi based on the distribution of DMO.

摘要

在藤壶肌纤维暴露于pH 6.5的15 mM弱酸5,5 - 二甲基恶唑烷 - 2,4 - 二酮(DMO)的过程中,使用微电极跟踪其细胞内pH(pHi)的时间进程。pHi最初的快速下降用于确定膜对DMO分子的通透性,而随后平台期较慢的下降则得出膜对DMO离子的通透性。这种实验方法和数据的数学处理可用于获得膜对其他弱酸或弱碱的通透性。假设纤维为圆柱体,我们发现对DMO分子的通透性值为1.9×10⁻⁴ cm/s,对离子的通透性值为1.5×10⁻⁷ cm/s。因此,中性形式的通透性约为离子化形式的10³倍。在pHi = 7.3、外部pH = 7.5和膜电位 = -52 mV的常见条件下,这种通透性比率在基于DMO分布测定pHi时仅引入 -0.01至 -0.02的误差。

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