Meyer G
Dipartimento di Fisiologia e Biochimica Generali, Università degli Studi di Milano.
Boll Soc Ital Biol Sper. 1992 Jun;68(6):373-8.
Since secretion of electrolytes may be regulated by membrane potential difference, ion channels were studied using patchclamp technique. We have identified, in cell-attached configuration, inward-rectifying channels: the zero-current potential corresponded to the K+ equilibrium potential calculated from intracellular K+ activity. Using inside-out configuration and symmetric 145 mM KCl salines, i/V curve was linear, channel conductance was about 170 pS and the reversal potential 0 mV. The channels were selective for K+ over Na+, N-methylglucamine and anions and were activated by membrane depolarization.
由于电解质的分泌可能受膜电位差调节,因此采用膜片钳技术对离子通道进行了研究。在细胞贴附模式下,我们鉴定出内向整流通道:零电流电位对应于根据细胞内钾离子活性计算出的钾离子平衡电位。在内外膜翻转模式和对称的145 mM氯化钾盐溶液条件下,电流-电压(i/V)曲线呈线性,通道电导约为170 pS,反转电位为0 mV。这些通道对钾离子的选择性高于钠离子、N-甲基葡糖胺和阴离子,并被膜去极化激活。