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新型血管扩张剂LP - 805对兔离体股动脉胞浆Ca2+浓度及张力的影响。

The effects of a novel vasodilator, LP-805, on cytosolic Ca2+ concentrations and on tension in rabbit isolated femoral arteries.

作者信息

Ushio-Fukai M, Hirano K, Kanaide H

机构信息

Division of Molecular Cardiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

Br J Pharmacol. 1994 Dec;113(4):1173-82. doi: 10.1111/j.1476-5381.1994.tb17121.x.

Abstract
  1. LP-805, 8-tert-butyl-6,7-dihydropyrrolo-[3,2-e]-5-methylpyrazolo- [1,5a]-pyrimidine-3-carbonitrile, is a newly synthesized potent vasodilator. To investigate the cellular mechanisms of vasorelaxation induced by LP-805, we simultaneously determined the effects of LP-805 on cytosolic Ca2+ concentrations ([Ca2+]i) and on tension of smooth muscle of rabbit femoral arterial strips, with or without the endothelium, using front-surface fluorometry and fura-2. 2. In the absence of the endothelium, LP-805, in a concentration-dependent manner, decreased [Ca2+]i and tension during the contraction induced by K(+)-depolarization, at relatively low concentrations ([K+]o < or = 30 mM). The decreases in [Ca2+]i and tension were fully antagonized by treatment with 2 x 10(-6) M glibenclamide. The [Ca2+]i-tension relationship in the LP-805-induced relaxation was similar to that of K(+)-depolarization-induced contractions. 3. LP-805, in a concentration-dependent manner (IC50 for inhibition of tension; 1.7 x 10(-6) M), decreased both [Ca2+]i and tension during the steady-state of contractions induced by 1 x 10(-7) M noradrenaline (NA) in the strips without the endothelium. Glibenclamide completely inhibited these reductions of [Ca2+]i and tension. At the steady-state of relaxation induced by LP-805 during NA-induced contraction, [Ca2+]i-tension relation was shifted to the left of that obtained with high K(+)-induced contraction. 4. NA induced transient increases in [Ca2+]i and tension in the absence of extracellular Ca2+. LP-805 (up to 3 x 10(-6) M) had no effect on these intracellular Ca2+ mobilisation and tension development induced by NA. 5. In strips with an intact endothelium, LP-805 decreased both [Ca2+]i and tension during contraction induced by 1 x 10(-7) M NA. The concentration-response curve for inhibition of [Ca2+]i and tension obtained in the presence of the endothelium was shifted to the left from that obtained in the absence of endothelium. IC50 for the inhibition of tension obtained in the strips with the endothelium was 4.0 x 10(-7) M. Treatment with 1 x 10(-4) M NG-nitro-L-arginine (L-NOARG) attenuated reductions of both [Ca2+]i and tension induced by LP-805 and the concentration-response curve shifted to the right and overlapped that obtained in the absence of the endothelium. Treatment with glibenclamide almost fully overcame the reduction of [Ca2+]i induced by LP-805, while the reversion of tension was 50% at most. 6. In the presence of the endothelium with L-NOARG, LP-805 reduced the tension to the extent of that expected from the reduction of [Ca2'ji, as based on the [Ca2+]i-tension relationship obtained with LP-805 in the absence of endothelium. On the contrary, in the presence of the endothelium without L-NOARG, LP-805 induced a greater reduction of tension than expected from the reduction of [Ca2+J1.This effect became more apparent after treatment with glibenclamide.7. These results suggest that: (1) LP-805 relaxes smooth muscle mainly by activating ATP-sensitive K+channels of smooth muscle and by releasing endothelium-derived relaxing factor (EDRF). (2) Activation of ATP-sensitive K+ channels decrease [Ca2+]i and thereby relax smooth muscle with no effect on Ca2"-sensitivity of the contractile apparatus of smooth muscle or on the agonist-induced Ca2"-release process. (3) EDRF induced by LP-805 relaxes smooth muscle not only by decreasing [Ca2+]i but also decreasing Ca2+-sensitivity of the contractile apparatus of smooth muscle. In the presence of an intact endothelium, a decrease in Ca2+-sensitivity of the contractile apparatus may play an important role in LP-805-induced relaxation.
摘要
  1. LP - 805,即8 - 叔丁基 - 6,7 - 二氢吡咯并[3,2 - e] - 5 - 甲基吡唑并[1,5a] - 嘧啶 - 3 - 腈,是一种新合成的强效血管舒张剂。为研究LP - 805诱导血管舒张的细胞机制,我们使用表面荧光测定法和fura - 2同时测定了LP - 805对兔股动脉条带(有无内皮)平滑肌细胞内Ca²⁺浓度([Ca²⁺]i)和张力的影响。2. 在无内皮的情况下,LP - 805以浓度依赖方式降低了由K⁺去极化诱导收缩过程中的[Ca²⁺]i和张力,在相对较低浓度([K⁺]o≤30 mM)时即可出现。用2×10⁻⁶ M格列本脲处理可完全拮抗[Ca²⁺]i和张力的降低。LP - 805诱导的舒张过程中[Ca²⁺]i - 张力关系与K⁺去极化诱导的收缩过程相似。3. LP - 805以浓度依赖方式(抑制张力的IC50为1.7×10⁻⁶ M)降低了无内皮条带中由1×10⁻⁷ M去甲肾上腺素(NA)诱导的收缩稳态期的[Ca²⁺]i和张力。格列本脲完全抑制了[Ca²⁺]i和张力的这些降低。在NA诱导收缩过程中LP - 805诱导的舒张稳态期,[Ca²⁺]i - 张力关系向左移至高于高K⁺诱导收缩时的水平。4. 在无细胞外Ca²⁺时,NA诱导[Ca²⁺]i和张力短暂升高。LP - 805(高达3×10⁻⁶ M)对NA诱导的这些细胞内Ca²⁺动员和张力发展无影响。5. 在有完整内皮的条带中,LP - 805降低了由1×10⁻⁷ M NA诱导收缩过程中的[Ca²⁺]i和张力。在有内皮存在时获得的抑制[Ca²⁺]i和张力的浓度 - 反应曲线相对于无内皮时向左移。有内皮条带中抑制张力的IC50为4.0×10⁻⁷ M。用1×10⁻⁴ M NG - 硝基 - L - 精氨酸(L - NOARG)处理减弱了LP - 805诱导的[Ca²⁺]i和张力的降低,浓度 - 反应曲线右移并与无内皮时获得的曲线重叠。用格列本脲处理几乎完全克服了LP - 805诱导的[Ca²⁺]i降低,而张力的恢复最多为50%。6. 在有内皮且存在L - NOARG的情况下,基于在无内皮时LP - 805获得的[Ca²⁺]i - 张力关系,LP - 805降低的张力程度与[Ca²⁺]i降低预期的程度一致。相反,在有内皮但无L - NOARG的情况下,LP - 805诱导的张力降低比[Ca²⁺]i降低预期的程度更大。用格列本脲处理后这种效应更明显。7. 这些结果表明:(1)LP - 805主要通过激活平滑肌的ATP敏感性K⁺通道和释放内皮源性舒张因子(EDRF)来舒张平滑肌。(2)ATP敏感性K⁺通道的激活降低[Ca²⁺]i,从而舒张平滑肌,对平滑肌收缩装置的Ca²⁺敏感性或激动剂诱导的Ca²⁺释放过程无影响。(3)LP - 805诱导的EDRF不仅通过降低[Ca²⁺]i舒张平滑肌,还通过降低平滑肌收缩装置的Ca²⁺敏感性来实现。在有完整内皮存在时,收缩装置Ca²⁺敏感性的降低可能在LP - 805诱导的舒张中起重要作用。

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