E Melendez, M Bidet, J L Reyes, S Martial, O Barbier, M Tauc, E Sanchez, P Poujeol
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引用次数: 0
摘要
新生大鼠远端细胞表达一个由二氢吡啶药物激活的顶端Ca2+通道。同样,在Madin-Darby犬肾(MDCK)细胞中,硝苯地平在fura-2负载细胞中以浓度依赖的方式增加Ca2+i (IC50=4 μM)。对硝苯地平的反应被EGTA消除,表明它依赖于细胞外钙。Ca2+通道拮抗剂isradipine和激动剂BayK8644增加Ca2+i,表明这种作用与二氢吡啶组有关。地尔硫卓(20 μM)和钆(200 μM)可降低硝苯地平的作用(分别为62%和43%)。镧(100 μM)对响应没有影响。缬霉素对膜电位的夹持没有改变硝苯地平引起的膜电位增加,表明它与钾通量无关。我们将MDCK细胞置于-50 mV,灌注含有10 mM CaCl2的溶液中,进行全细胞钳夹实验。硝苯地平(20 μM)诱导电流升高(1.2±0.3 nA), Gd3+部分抑制。0.5 mM EGTA存在时硝苯地平无明显电流诱导作用。为了确定硝苯地平对膜电位的影响,我们进行了oxonol荧光实验。硝苯地平或Bay K8644的加入诱导去极化,高度依赖于外钠。硝苯地平(20 μM)诱导去极化电位为6.9±0.8 mV (n=21)。硝苯地平的EC50在10 μM范围内。我们得出结论,MDCK细胞表现出二氢吡啶激活的阳离子通道。
New evidence of a dihydropyridine-activated cationic channel in the MDCK cell line.
Newborn rat distal cells express an apical Ca2+ channel activated by dihydropyridine drugs. Similarly, in Madin-Darby canine kidney (MDCK) cells, nifedipine increased Ca2+i in a concentration-dependent manner (IC50=4 μM) in fura-2-loaded cells. Response to nifedipine was abolished by EGTA, suggesting that it depends on extracellular calcium. Ca2+ channel antagonist isradipine and agonist BayK8644 increased Ca2+i indicating that this effect is related to the dihydropyridine group. Diltiazem (20 μM) and gadolinium (200 μM) decreased the nifedipine effect (62 and 43%, respectively). Lanthanum (100 μM) did not change the response. Valinomycin clamping of the membrane potential did not modify nifedipine-induced increment, indicating that it was unrelated to potassium fluxes. We performed whole cell clamp experiments in MDCK cells maintained at -50 mV with perfusion solution containing 10 mM CaCl2. Nifedipine (20 μM) induced an increase in current (1.2±0.3 nA), which was partially inhibited by Gd3+. No significant current was induced by nifedipine in the presence of 0.5 mM EGTA. To determine the effects of nifedipine on the membrane potential, we performed oxonol fluorescence experiments. The addition of nifedipine or Bay K8644 induced depolarization, highly dependent on external sodium. Nifedipine (20 μM) induced depolarization of 6.9±0.8 mV (n=21). EC50 to nifedipine was in the 10 μM range. We conclude that MDCK cells exhibit a dihydropyridine-activated cationic channel.