首页> 外文期刊>British Journal of Pharmacology >4-Chloro-benzo(F)isoquinoline (CBIQ) activates CFTR chloride channels and KCNN4 potassium channels in Calu-3 human airway epithelial cells.
【24h】

4-Chloro-benzo(F)isoquinoline (CBIQ) activates CFTR chloride channels and KCNN4 potassium channels in Calu-3 human airway epithelial cells.

机译:4-氯苯并(F)异喹啉(CBIQ)激活Calu-3人气道上皮细胞中的CFTR氯化物通道和KCNN4钾通道。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Calu-3 cells have been used to investigate the actions of 4-chloro-benzo[F]isoquinoline (CBIQ) on short-circuit current (SCC) in monolayers, whole-cell recording from single cells and by patch clamping. CBIQ caused a sustained, reversible and repeatable increase in SCC in Calu-3 monolayers with an EC(50) of 4.0 microm. Simultaneous measurements of SCC and isotopic fluxes of (36)Cl(-) showed that CBIQ caused electrogenic chloride secretion. Apical membrane permeabilisation to allow recording of basolateral membrane conductance in the presence of a K(+) gradient suggested that CBIQ activated the intermediate-conductance calcium-sensitive K(+)-channel (KCNN4). Permeabilisation of the basolateral membranes of epithelial monolayers in the presence of a Cl(-) gradient suggested that CBIQ activated the Cl(-)-channel CFTR in the apical membrane. Whole-cell recording in the absence of ATP/GTP of Calu-3 cells showed that CBIQ generated an inwardly rectifying current sensitive to clotrimazole. In the presence of the nucleotides, a more complex I/V relation was found that was partially sensitive to glibenclamide. The data are consistent with the presence of both KCNN4 and CFTR in Calu-3. Isolated inside-out patches from Calu-3 cells revealed clotrimazole-sensitive channels with a conductance of 12 pS at positive potentials after activation with CBIQ and demonstrating inwardly rectifying properties, consistent with the known properties of KCNN4. Cell-attached patches showed single channel events with a conductance of 7 pS and a linear I/V relation that were further activated by CBIQ by an increase in open state probability, consistent with known properties of CFTR. It is concluded that CBIQ activates CFTR and KCNN4 ion channels in Calu-3 cells.British Journal of Pharmacology (2004) 142, 531-542. doi:10.1038/sj.bjp.0705846
机译:Calu-3细胞已被用于研究4-氯-苯并[F]异喹啉(CBIQ)对单层短路电流(SCC),单细胞全细胞记录和膜片钳作用的作用。 CBIQ导致Calu-3单层中SCC的持续,可逆和可重复增加,EC(50)为4.0微米。同时测量的SCC和(36)Cl(-)的同位素通量表明,CBIQ引起了电化学氯化物的分泌。顶端膜通透性允许在存在K(+)梯度的情况下记录基底外侧膜电导,这表明CBIQ激活了中电导钙敏感K(+)通道(KCNN4)。在Cl(-)梯度存在下上皮单层基底外侧膜的通透性提示CBIQ激活了顶膜中的Cl(-)通道CFTR。在不存在Calu-3细胞ATP / GTP的情况下进行全细胞记录表明,CBIQ产生了对克霉唑敏感的向内整流电流。在存在核苷酸的情况下,发现对格列本脲部分敏感的更复杂的I / V关系。数据与Calu-3中同时存在KCNN4和CFTR一致。从Calu-3细胞分离出的由内而外的贴片显示了克霉唑敏感的通道,在用CBIQ激活并显示出内部整流特性后,在正电势下的电导值为12 pS,与KCNN4的已知特性一致。细胞贴片显示单通道事件,电导为7 pS,线性I / V关系,通过打开状态概率的增加,由CBIQ进一步激活,这与CFTR的已知特性一致。结论是CBIQ激活了Calu-3细胞中的CFTR和KCNN4离子通道。英国药理学杂志(2004)142,531-542。 doi:10.1038 / sj.bjp.0705846

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号