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Selective modulation by membrane potential of the interaction of some calcium entry blockers with calcium channels in rat mesenteric artery.

机译:通过膜电位选择性调节大鼠肠系膜动脉中某些钙进入阻滞剂与钙通道的相互作用。

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摘要

1. The effects of flunarizine, (+)-PN 200-110 and nifedipine on [3H]-(+)-PN 200-110 specific binding were investigated in intact rat mesenteric arteries bathed in physiological solution or in KCl-depolarizing solution, and in a membrane fraction from rat mesenteric arteries. 2. Unlabelled dihydropyridines, (+)-PN 200-110 and nifedipine, inhibited [3H]-(+)-PN 200-110 specific binding concentration-dependently in polarized as well as in depolarized intact arteries. The Ki value of (+)-PN 200-110 was decreased in arteries bathed in KCl-depolarizing solution compared to arteries bathed in physiological solution, while the Ki value of nifedipine was not significantly changed. Ki values measured in depolarized arteries were close to the IC50 values (concentrations inhibiting by 50% the KCl-contraction of rat mesenteric artery). 3. Flunarizine (10(-6) M) was unable to displace the specific binding of [3H]-(+)-PN 200-110 in intact arteries bathed in physiological solution. At 10(-7) M-10(-6) M, it inhibited the binding in depolarized arteries, suggesting that prolonged depolarization is required for the interaction of flunarizine with the dihydropyridine receptor. 4. In a membrane fraction isolated from rat mesenteric arteries, (+)-PN 200-110, nifedipine and flunarizine were all able to displace completely the specific binding of [3H]-(+)-PN 200-110. Displacement curves were parallel and Hill coefficients were close to unity. Ki values were close to the values obtained in depolarized intact arteries.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:1.在浸泡于生理溶液或KCl去极化溶液中的完整大鼠肠系膜动脉中,研究了氟硝利嗪,(+)-PN 200-110和硝苯地平对[3H]-(+)-PN 200-110特异性结合的影响,和来自大鼠肠系膜动脉的膜部分。 2.未标记的二氢吡啶类(+)-PN 200-110和硝苯地平在极化和去极化的完整动脉中依赖性地抑制[3H]-(+)-PN 200-110的特异性结合。与在生理盐水中浸泡的动脉相比,在KCl去极化溶液中浸泡的动脉的(+)-PN 200-110的Ki值降低,而硝苯地平的Ki值没有明显变化。在去极化动脉中测得的Ki值接近IC50值(该浓度可抑制大鼠肠系膜动脉的KCl收缩50%)。 3.氟那利嗪(10(-6)M)无法取代沐浴在生理溶液中的完整动脉中的[3H]-(+)-PN 200-110特异性结合。在10(-7)M-10(-6)M时,它抑制去极化动脉中的结合,这表明氟尿利嗪与二氢吡啶受体的相互作用需要长时间去极化。 4.在从大鼠肠系膜动脉分离的膜级分中,(+)-PN 200-110,硝苯地平和氟硝利嗪都能够完全取代[3H]-((+)-PN 200-110)的特异性结合。位移曲线是平行的,希尔系数接近于1。 Ki值接近于去极化的完整动脉中获得的值。(摘要截断为250字)

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