首页> 外文期刊>Japanese Journal of Pharmacology >Effects of a Prostaglandin I2 Analog Iloprost on Cytoplasmic Ca2+ Levels and Muscle Contraction in Isolated Guinea Pig Aorta
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Effects of a Prostaglandin I2 Analog Iloprost on Cytoplasmic Ca2+ Levels and Muscle Contraction in Isolated Guinea Pig Aorta

机译:前列腺素I2类似物伊洛前列素对离体豚鼠主动脉细胞质Ca2 +水平和肌肉收缩的影响

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References(24) Cited-By(10) In the isolated guinea pig aorta, the prostaglandin 12 analog iloprost (0.01-10 μM) inhibited the contractions induced by the thromboxane A2 analog U46619 (9, 11-dideoxy-llα, 9α-epoxymethanoprostaglandin F2α; 30 nM) and prostaglandin F2α (PGF2α, 1 μM) in a concentration-dependent manner. In contrast, iloprost only partially inhibited the high K+ (65.4 mM)-induced contraction. In the muscle stimulated with high K+, verapamil (0.3 and 10 μM)inhibited [Ca2+]i and muscle tension in parallel, whereas iloprost (1 μM) inhibited muscle tension with only a small decrease in [Ca2+]i. In the muscle stimulated with U46619 (30 nM), verapamil and iloprost decreased both [Ca2+]i and muscle tension. However, as compared with the effect of verapamil, iloprost more strongly inhibited muscle tension than [Ca2+]i. The iloprost (0.1—1 μM)-induced relaxation was accompanied by a concentration-dependent increase in cAMP content. It was further demonstrated that inhibition of the U46619-contractions was augmented in the presence of cycloxygenase inhibitors, such as indomethacin (10 μM), ibuprofen (10 μM) and aspirin (10 μM). In contrast, the inhibition of PGF2α-induced contraction was not affected by indomethacin. Similarly, the inhibitory effect of forskolin on U46619-induced contractions, but not on PGF2α-induced contraction, was enhanced by indomethacin. These results suggest that iloprost inhibits vascular smooth muscle contraction by decreasing [Ca2+]i and the Ca2+ sensitivity of contractile elements through a cAMP-dependent mechanism. The results also suggest that in U46619-stimulated muscle, vasoactive prostaglandins that counterbalance the relaxing action of cAMP may be generated.
机译:参考文献(24)被引用的By(10)在离体的豚鼠主动脉中,前列腺素12类似物伊洛前列素(0.01-10μM)抑制了血栓烷A2类似物U46619(9,11-二脱氧-IIα,9α-环氧甲氧基前列腺素)诱导的收缩。 F2α; 30 nM)和前列腺素F2α(PGF2α,1μM)呈浓度依赖性。相反,伊洛前列素仅部分抑制高K +(65.4 mM)诱导的收缩。在高K +刺激的肌肉中,维拉帕米(0.3和10μM)并行抑制[Ca2 +] i和肌肉张力,而伊洛前列素(1μM)抑制肌肉张力,而[Ca2 +] i仅小幅下降。在用U46619(30 nM)刺激的肌肉中,维拉帕米和伊洛前列素同时降低[Ca2 +] i和肌肉张力。但是,与维拉帕米的作用相比,伊洛前列素比[Ca2 +] i更能抑制肌肉张力。伊洛前列素(0.1-1μM)引起的松弛伴随cAMP含量的浓度依赖性增加。进一步证明,在环加氧酶抑制剂(如吲哚美辛(10μM),布洛芬(10μM)和阿司匹林(10μM))存在下,对U46619收缩的抑制作用增强。相反,吲哚美辛不抑制PGF2α诱导的收缩。同样,吲哚美辛增强了福司可林对U46619诱导的收缩的抑制作用,但对PGF2α诱导的收缩没有抑制作用。这些结果表明,伊洛前列素通过依赖cAMP的机制降低[Ca2 +] i和收缩因子的Ca2 +敏感性,从而抑制血管平滑肌收缩。该结果还表明,在U46619刺激的肌肉中,可能会产生平衡cAMP松弛作用的血管活性前列腺素。

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