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Action of salicylate on membrane capacitance of outer hair cells from the guinea-pig cochlea.

机译:水杨酸酯对豚鼠耳蜗外毛细胞膜电容的作用。

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摘要

1. The effect of salicylate on membrane capacitance and intracellular pH has been measured in isolated outer hair cells (OHCs) during whole cell recording. Cell membrane capacitance was measured using a lock-in amplifier technique. 2. Salicylate applied in the bath reduced the fast charge movement, equivalent to a voltage-dependent membrane capacitance, present in OHCs. Simultaneous measurement of membrane capacitance and voltage-driven cell length changes showed that salicylate reduced both together. 3. A small effect of salicylate on outward currents at 0 mV was observed. Sodium salicylate (5 mM) reduced the currents by 19% and another weak acid, sodium butyrate (10 mM), reduced outward currents in OHCs by 15%. 4. The ratiometric dye 2,7-bis(2-carboxymethyl)-5,6-carboxyfluorescein (BCECF) was used to measure pHi changes in OHCs during weak acid exposure. Membrane capacitance and pHi were measured simultaneously in OHCs exposed first to 10 mM sodium butyrate and then to 5 mM sodium salicylate. Although both compounds produced a similar reduction in pHi, butyrate decreased the resting capacitance from a mean resting capacitance of 35 pF (at -30 mV) by 5.4 +/- 2.1 pF, whereas salicylate decreased it by 15.7 +/- 2.3 pF (n = 4). 5. Exposure of OHCs to 10 mM sodium benzoate, an amphiphilic anion, reduced resting membrane capacitance at -30 mV by 9.2 +/- 3.2 pF (n = 3). Outward currents, measured at 0 mV, were reduced by 0.25 +/- 0.05 nA during benzoate application, comparable with the effect of salicylate. 6. Capacitance was measured during slow bath application of salicylate. The resulting dose-capacitance curve had a Hill coefficient of 3.40 +/- 0.85 (n = 4) and a half-maximal dose of 3.95 +/- 0.34 mM. The dose-capacitance curve was not significantly voltage dependent. 7. Salicylate had no detectable effect on the resting capacitance of Deiters' cells, a non-sensory cell type of the organ of Corti. 8. It is concluded that many of the described effects of salicylate on hearing may arise from the partitioning of the salicylate molecule into the membrane of the OHC and consequent inhibition of OHC motility.
机译:1.在全细胞记录过程中,已测量了水杨酸酯对离体外毛细胞(OHC)中膜电容和细胞内pH的影响。使用锁定放大器技术测量细胞膜电容。 2.在水浴中使用水杨酸盐会降低快速电荷运动,这相当于OHC中存在的电压依赖性膜电容。同时测量膜电容和电压驱动的细胞长度变化表明,水杨酸盐可同时降低两者。 3.观察到水杨酸酯对0 mV外向电流的影响很小。水杨酸钠(5 mM)降低了19%的电流,另一种弱酸丁酸钠(10 mM)将OHC中的向外电流降低了15%。 4.使用比例染料2,7-双(2-羧甲基)-5,6-羧基荧光素(BCECF)来测量弱酸暴露期间OHC中pHi的变化。在先暴露于10 mM丁酸钠然后暴露于5 mM水杨酸钠的OHC中同时测量膜电容和pHi。尽管两种化合物均会产生类似的pHi降低,但丁酸盐会使静态电容从35 pF(在-30 mV时)的平均静态电容降低了5.4 +/- 2.1 pF,而水杨酸酯却将其降低了15.7 +/- 2.3 pF(n = 4)。 5.将OHC暴露于10 mM的两亲性阴离子苯甲酸钠中,使-30 mV时的静息膜电容降低9.2 +/- 3.2 pF(n = 3)。在苯甲酸酯应用期间,在0 mV处测得的外向电流降低了0.25 +/- 0.05 nA,与水杨酸酯的作用相当。 6.在水杨酸盐的慢浴期间测量电容。所得的剂量-电容曲线的Hill系数为3.40 +/- 0.85(n = 4),最大剂量的一半为3.95 +/- 0.34 mM。剂量电容曲线与电压无关。 7.水杨酸酯对Deiters细胞(Corti器官的非感觉细胞类型)的静息电容没有可检测的影响。 8.结论是,水杨酸酯对听力的许多上述影响可能是由于水杨酸酯分子分配到OHC的膜中,进而抑制了OHC运动性所致。

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