Kai H, Kanaide H, Nakamura M
Division of Molecular Cardiology and Cardiovascular Clinic, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
J Pharmacol Exp Ther. 1989 Dec;251(3):1174-80.
We made use of quin2 microfluorometry to observe the effects of nicorandil (2-nicotinamidoethyl nitrate) on cytosolic Ca++ concentrations [( Ca++]i) in rat aortic vascular smooth muscle cells in primary culture. Regardless of whether cells were at rest, in a state of Ca++-depletion or at K+-depolarization, nicorandil rapidly and dose-dependently decreased [Ca++]i to the lower steady-state level. Nicorandil dose-dependently inhibited norepinephrine-induced Ca++ transients in physiological salt solution containing 1 mM Ca++. Nicorandil accelerated the reduction of [Ca++]i observed when the cells were exposed to Ca++-free solution. When the cells were treated with nicorandil in Ca++-free solution, Ca++ transients induced by the first application of caffeine were little affected, but those induced by subsequent repetitive caffeine applications were reduced strongly and progressively. In contrast, pretreatment with nicorandil markedly inhibited Ca++ transients induced by the first application of norepinephrine, in Ca++-free solution. These effects of nicorandil on [Ca++]i and Ca++ transients were similar to those seen with nitroglycerin. The denitrated compound of nicorandil, N-(2-hydroxyethyl)nicotinamide, had no such effect. Thus, it is apparently the nitrate moiety of the chemical structure by which nicorandil actively and strongly reduces [Ca++]i in vascular smooth muscle cells. The reduction of [Ca++]i by nicorandil may result in a decrease in Ca++ in the norepinephrine-sensitive store; hence, the reduction of [Ca++]i elevation by norepinephrine.
我们利用喹啉-2微荧光测定法观察了尼可地尔(2-烟酰胺基硝酸乙酯)对原代培养的大鼠主动脉血管平滑肌细胞胞质钙离子浓度[Ca++]i的影响。无论细胞处于静息状态、钙离子耗竭状态还是钾离子去极化状态,尼可地尔均能迅速且剂量依赖性地将[Ca++]i降低至较低的稳态水平。在含有1 mM钙离子的生理盐溶液中,尼可地尔剂量依赖性地抑制去甲肾上腺素诱导的钙离子瞬变。当细胞暴露于无钙溶液中时,尼可地尔加速了[Ca++]i的降低。当在无钙溶液中用尼可地尔处理细胞时,首次应用咖啡因诱导的钙离子瞬变几乎不受影响,但随后重复应用咖啡因诱导的钙离子瞬变则强烈且逐渐降低。相比之下,在无钙溶液中,用尼可地尔预处理可显著抑制首次应用去甲肾上腺素诱导的钙离子瞬变。尼可地尔对[Ca++]i和钙离子瞬变的这些作用与硝酸甘油所见的作用相似。尼可地尔的脱硝化合物N-(2-羟乙基)烟酰胺没有这种作用。因此,显然是化学结构中的硝酸酯部分使尼可地尔在血管平滑肌细胞中积极且强烈地降低[Ca++]i。尼可地尔使[Ca++]i降低可能导致去甲肾上腺素敏感储存库中的钙离子减少;因此,去甲肾上腺素引起的[Ca++]i升高也会降低。