Yamamoto T, Kakehata S, Yamada T, Saito T, Saito H, Akaike N
Department of Physiology, Kyushu University Faculty of Medicine, Fukuoka Japan.
Brain Res. 1995 Apr 17;677(1):89-96. doi: 10.1016/0006-8993(95)00121-6.
The effects of caffeine on the outer hair cells (OHCs) freshly dissociated from guinea-pig cochlea were investigated with the whole-cell patch-clamp technique, in both the conventional and the nystatin perforated patch-clamp configurations under voltage-clamp condition. Application of caffeine (> 1 mM for 10-30 s) induced an inward current (Icaffeine) with decrease of conductance in a dose-dependent manner at a holding potential (VH) of -60 mV. The reversal potential of Icaffeine (Ecaffeine) was close to the K+ equilibrium potential. The Icaffeine was not affected by Ca(2+)-free external solution. The internal perfusion of the Ca2+ chelator BAPTA had no effect on Icaffeine. The Icaffeine was not modulated by the external application of H-8 or staurosporine and by the internal perfusion of GDP-beta S. The amplitude of Icaffeine was the largest at the basal region of OHCs when caffeine was locally applied by the 'puffer' method. These results suggest that caffeine induces a decrease in membrane potassium conductance of the OHCs mainly at the basal region without mediating the intracellular signaling pathway.
采用全细胞膜片钳技术,在电压钳条件下,以传统膜片钳配置和制霉菌素穿孔膜片钳配置,研究咖啡因对从豚鼠耳蜗新鲜分离的外毛细胞(OHC)的影响。施加咖啡因(>1 mM,持续10 - 30 s)在-60 mV的钳制电位(VH)下,以剂量依赖方式诱导出内向电流(I咖啡因),同时电导降低。I咖啡因的反转电位(E咖啡因)接近K +平衡电位。I咖啡因不受无钙细胞外溶液的影响。Ca2 +螯合剂BAPTA的细胞内灌流对I咖啡因无影响。I咖啡因不受细胞外应用H - 8或星形孢菌素以及GDP - βS的细胞内灌流的调节。当通过“喷注”法局部施加咖啡因时,I咖啡因的幅度在OHC的基部区域最大。这些结果表明,咖啡因主要在基部区域诱导OHC的膜钾电导降低,而不介导细胞内信号通路。