Srinivas S P, Bonanno J A, Hughes B A
Morton D. Sarver Center for Cornea and Contact Lens Research, School of Optometry, University of California, Berkeley, California 94720, USA.
Biophys J. 1998 Jul;75(1):115-23. doi: 10.1016/S0006-3495(98)77499-5.
This study describes a quantitative analysis of the enhancement in anion permeability through swelling-activated Cl- channels, using the halide-sensitive fluorescent dye 6-methoxy-N-(3-sulfopropyl)quinolinium (SPQ). Cultured bovine corneal endothelial monolayers perfused with NO3- Ringer's were exposed to I- pulses under isosmotic and, subsequently, hyposmotic conditions. Changes in SPQ fluorescence due to I- influx were significantly faster under hyposmotic than under isosmotic conditions. Plasma membrane potential (Em) was -58 and -32 mV under isosmotic and hyposmotic conditions, respectively. An expression for the ratio of I- permeability under hyposmotic condition to that under isosmotic condition (termed enhancement ratio or ER) was derived by combining the Stern-Volmer equation (for modeling SPQ fluorescence quenching by I-) and the Goldman flux equation (for modeling the electrodiffusive unidirectional I- influx). The fluorescence values and slopes at the inflection points of the SPQ fluorescence profile during I- influx, together with Em under isosmotic and hyposmotic conditions, were used to calculate ER. Based on this approach, endothelial cells were shown to express swelling-activated Cl- channels with ER = 4.9 when the hyposmotic shock was 110 +/- 10 mosM. These results illustrate the application of the SPQ-based method for quantitative characterization of swelling-activated Cl- channels in monolayers.
本研究描述了使用卤化物敏感荧光染料6-甲氧基-N-(3-磺丙基)喹啉鎓(SPQ)对肿胀激活的氯离子通道阴离子通透性增强的定量分析。用硝酸根林格氏液灌注的培养牛角膜内皮单层细胞在等渗和随后的低渗条件下暴露于碘离子脉冲。在低渗条件下,由于碘离子内流导致的SPQ荧光变化比在等渗条件下明显更快。在等渗和低渗条件下,质膜电位(Em)分别为-58和-32 mV。通过结合斯特恩-沃尔默方程(用于模拟碘离子对SPQ荧光的猝灭)和戈德曼通量方程(用于模拟电扩散单向碘离子内流),得出了低渗条件下碘离子通透性与等渗条件下碘离子通透性之比的表达式(称为增强比或ER)。在碘离子内流期间,SPQ荧光曲线拐点处的荧光值和斜率,以及等渗和低渗条件下的Em,用于计算ER。基于这种方法,当低渗休克为110±10 mosM时,内皮细胞显示出表达肿胀激活的氯离子通道,ER = 4.9。这些结果说明了基于SPQ的方法在定量表征单层细胞中肿胀激活的氯离子通道方面的应用。