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用荧光染料评估成骨样细胞(UMR 106)的膜电位和阳离子含量。

Membrane potential and cation content of osteoblast-like cells (UMR 106) assessed by fluorescent dyes.

作者信息

Civitelli R, Reid I R, Halstead L R, Avioli L V, Hruska K A

出版信息

J Cell Physiol. 1987 Jun;131(3):434-41. doi: 10.1002/jcp.1041310316.

Abstract

A number of cellular functions have recently been associated with alterations of the membrane potential in non-excitable cells. To assess the electrophysiologic regulation of osteoblast function, a method for measuring the membrane potential (Em) of a rat osteogenic sarcoma cell line (UMR 106) by the voltage-sensitive oxonol dye di-BA-C4(3) was developed. The fluorescent signal of di-BA-C4(3) was calibrated through a null point method using the protonophore FCCP. At null point, Em is equivalent to H+ equilibrium potential, and may be calculated by the Nernst equation. Intracellular pH (pHi) changes induced by the protonophore were monitored using BCECF, a pH-sensitive fluorescent probe. In the presence of FCCP, intracellular pH was found to be linearly correlated to extracellular pH (pHo). Therefore, the value of pHi at null point was extrapolated as well. With this technique, we estimated the plasma membrane potential of the "putative" rat osteoblasts (UMR 106) as -28.3 +/- 4.0 mV (n = 10). This method corrected the 16% overestimation of Em derived from the assumption that pHi does not change during the calibration procedure, as described in previous studies employing pH null point techniques. With null point methods, using BCECF and the carboxylic ionophores nigericin and monensin, intracellular concentrations of potassium and sodium were also measured and found to be 125 +/- 0.7 mM (n = 3) and 24 +/- 5.3 mM (n = 3), respectively. Although the Em of UMR 106 cells was dependent on extracellular potassium concentration, these cells did not behave as a potassium electrode. The sodium/potassium permeability ratio, calculated by the Goldman equation, was estimated at 0.317. This high membrane permeability to sodium may contribute to the genesis of the low plasma membrane potential of UMR 106 cells.

摘要

最近,许多细胞功能都与非兴奋性细胞的膜电位改变有关。为了评估成骨细胞功能的电生理调节,开发了一种通过电压敏感的恶嗪染料二丁基氨基甲酰基苯并噻唑(di-BA-C4(3))测量大鼠骨肉瘤细胞系(UMR 106)膜电位(Em)的方法。使用质子载体羰基氰化物间氯苯腙(FCCP)通过零点法校准di-BA-C4(3)的荧光信号。在零点时,Em等同于H+平衡电位,可通过能斯特方程计算。使用pH敏感荧光探针2',7'-双(2-羧乙基)-5(6)-羧基荧光素(BCECF)监测质子载体诱导的细胞内pH(pHi)变化。在FCCP存在下,发现细胞内pH与细胞外pH(pHo)呈线性相关。因此,也外推了零点时的pHi值。通过该技术,我们估计“假定的”大鼠成骨细胞(UMR 106)的质膜电位为-28.3±4.0 mV(n = 10)。如先前采用pH零点技术的研究所描述的,该方法纠正了因在校准过程中假设pHi不变而导致的Em高估16%的情况。使用零点法,结合BCECF以及羧酸离子载体尼日利亚菌素和莫能菌素,还测量了细胞内钾和钠的浓度,分别为125±0.7 mM(n = 3)和24±5.3 mM(n = 3)。尽管UMR 106细胞的Em依赖于细胞外钾浓度,但这些细胞并不表现为钾电极。通过戈德曼方程计算的钠/钾渗透率比值估计为0.317。这种对钠的高膜通透性可能有助于UMR 106细胞低质膜电位的产生。

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