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新型钙通道拮抗剂米贝地尔对大血管内皮细胞中钙激活和容积激活氯通道的抑制作用

Inhibition by mibefradil, a novel calcium channel antagonist, of Ca(2+)- and volume-activated Cl- channels in macrovascular endothelial cells.

作者信息

Nilius B, Prenen J, Kamouchi M, Viana F, Voets T, Droogmans G

机构信息

KU Leuven, Laboratorium voor Fysiologie, Belgium.

出版信息

Br J Pharmacol. 1997 Jun;121(3):547-55. doi: 10.1038/sj.bjp.0701140.

DOI:10.1038/sj.bjp.0701140
PMID:9179399
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1564699/
Abstract
  1. We have studied the effects of mibefradil, a novel calcium antagonist, on the resting potential and ion channel activity of macrovascular endothelial cells (calf pulmonary artery endothelial cells, CPAE). The patch clamp technique was used to measure ionic currents and the Fura-II microfluorescence technique to monitor changes in the intracellular Ca2+ concentration, [Ca2+]i. 2. Mibefradil (10 microM) hyperpolarized the membrane potential of CPAE cells from its mean control value of -26.6 +/- 0.6 mV (n = 7) to -59.8 +/- 1.7 mV (n = 6). A depolarizing effect was observed at higher concentrations (-13.7 +/- 0.6 mV, n = 4, 30 microM mibefradil). 3. Mibefradil inhibited Ca(2+)-activated Cl- currents, ICl,Ca, activated by loading CPAE cells via the patch pipette with 500 nM free Ca2+ (Ki = 4.7 +/- 0.18 microM, n = 8). 4. Mibefradil also inhibited volume-sensitive Cl- currents, ICl,vol, activated by challenging CPAE cells with a 27% hypotonic solution (Ki = 5.4 +/- 0.22 microM, n = 6). 5. The inwardly rectifying K+ channel, IRK, was not affected by mibefradil at concentrations up to 30 microM. 6. Ca2+ entry activated by store depletion, as assessed by the rate of [Ca2+]i-increase upon reapplication of 10 mM extracellular Ca2+ to store-depleted cells, was inhibited by 17.6 +/- 6.5% (n = 8) in the presence of 10 microM mibefradil. 7. Mibefradil inhibited proliferation of CPAE cells. Half-maximal inhibition was found at 1.7 +/- 0.12 microM (n = 3), which is similar to the concentration for half-maximal block of Cl- channels. 8. These actions of mibefradil on Cl- channels and the concomitant changes in resting potential might, in addition to its effect on T-type Ca2+ channels, be an important target for modulation of cardiovascular function under normal and pathological conditions.
摘要
  1. 我们研究了新型钙拮抗剂米贝地尔对大血管内皮细胞(小牛肺动脉内皮细胞,CPAE)静息电位和离子通道活性的影响。采用膜片钳技术测量离子电流,并用Fura-II微荧光技术监测细胞内钙离子浓度[Ca2+]i的变化。2. 米贝地尔(10微摩尔)使CPAE细胞的膜电位从其平均对照值-26.6±0.6毫伏(n = 7)超极化至-59.8±1.7毫伏(n = 6)。在较高浓度下(-13.7±0.6毫伏,n = 4,30微摩尔米贝地尔)观察到去极化作用。3. 米贝地尔抑制通过膜片吸管向CPAE细胞加载500纳摩尔游离钙离子激活的钙激活氯电流ICl,Ca(Ki = 4.7±0.18微摩尔,n = 8)。4. 米贝地尔还抑制用27%低渗溶液刺激CPAE细胞激活的容积敏感性氯电流ICl,vol(Ki = 5.4±0.22微摩尔,n = 6)。5. 内向整流钾通道IRK在浓度高达30微摩尔时不受米贝地尔影响。6. 通过向储存耗竭细胞重新施加10毫摩尔细胞外钙离子后[Ca2+]i增加速率评估的储存耗竭激活的钙离子内流,在存在10微摩尔米贝地尔的情况下被抑制17.6±6.5%(n = 8)。7. 米贝地尔抑制CPAE细胞增殖。在1.7±0.12微摩尔时发现半数最大抑制(n = 3),这与氯通道半数最大阻断浓度相似。8. 米贝地尔对氯通道的这些作用以及静息电位的伴随变化,除了其对T型钙通道的作用外,可能是在正常和病理条件下调节心血管功能的重要靶点。