Welsh M J
Pflugers Arch. 1986;407 Suppl 2:S116-22. doi: 10.1007/BF00584940.
To investigate the cellular mechanism responsible for the apical membrane Cl conductance in airway epithelia, we used the patch-clamp technique to study single ion channels in primary cultures of canine tracheal epithelium. The cells contained an anion channel that had a single channel conductance of approximately 29 pS at negative voltages in symmetrical 145 mmol/l Cl solutions. In symmetrical Cl solutions the excised single-channel current-voltage relation was nonlinear, with conductance increasing at depolarizing voltages. The channel was inhibited by diphenylamine-2-carboxylate and anthracene-9-carboxylic acid at concentrations similar to those required to inhibit transepithelial Cl secretion. The channel was found in freshly isolated cells, isolated cells in culture, and in the apical membrane of confluent areas of cells. When attached to the cell the channel was activated by addition of isoproterenol in some, but not all cases. Often it was not observed to open until the patch was excised from the cell. The channel was not strongly voltage-gated, nor was it acutely regulated by internal Ca in the excised, inside-out configuration. These results suggest that this channel may be responsible for the apical Cl conductance in canine tracheal epithelium.
为了研究气道上皮细胞顶端膜氯离子电导的细胞机制,我们采用膜片钳技术研究犬气管上皮原代培养物中的单离子通道。在对称的145 mmol/l氯离子溶液中,细胞含有一个阴离子通道,在负电压下其单通道电导约为29 pS。在对称的氯离子溶液中,切除后的单通道电流-电压关系是非线性的,电导在去极化电压下增加。该通道被二苯胺-2-羧酸盐和蒽-9-羧酸盐抑制,其浓度与抑制跨上皮氯离子分泌所需的浓度相似。在新鲜分离的细胞、培养中的分离细胞以及汇合区域细胞的顶端膜中均发现了该通道。当连接到细胞上时,在一些但并非所有情况下,加入异丙肾上腺素可激活该通道。通常直到从细胞上切除膜片时才观察到通道开放。该通道不是强电压门控通道,在切除的内面向外模式中也不受内部钙离子的急性调节。这些结果表明,该通道可能负责犬气管上皮细胞的顶端氯离子电导。