槲皮素对体外大鼠气管收缩性的抑制作用。

R. Capasso, G. Aviello, B. Romano, Giuseppina Atorino, E. Pagano, F. Borrelli
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引用次数: 20

摘要

目的研究槲皮素(一种天然存在的类黄酮,传统上用于治疗支气管哮喘等气道疾病)对大鼠离体气管电场刺激或苯酚引起的收缩反应的影响。方法对离体气管组织施加5 Hz、400 mA、30 s的电场刺激,观察槲皮素(10(-6)-3 × 10(-4) M)累积浓度下的收缩反应。槲皮素的作用也在给予酚特拉明加心得安(阻断α和β肾上腺素能受体)、ng -硝基- l -精氨酸甲酯(阻断一氧化氮合成)、辣椒素(使感觉C纤维脱敏)、α -凝乳胰蛋白酶(一种快速降解血管活性肠肽的蛋白水解酶)、SR140333和SR48968(分别为抗凝素NK1和NK2受体拮抗剂)后进行了评估。squercetin对由苯酚和电场刺激引起的收缩产生浓度依赖性抑制。然而,槲皮素在抑制电场刺激引起的收缩方面比碳水化合物诱导的收缩更活跃,这表明槲皮素在突触前起作用(除了突触后作用,槲皮素对碳水化合物诱导的收缩的抑制作用也揭示了这一点)。酚妥拉明加心得安、SR 140333和SR 48968、辣椒素和α -凝乳胰蛋白酶对槲皮素对电场刺激引起的收缩的抑制作用不受影响。相反,一氧化氮合酶抑制剂ng -硝基- l -精氨酸甲酯显著降低槲皮素对电场刺激引起的收缩的抑制作用。结论squercetin通过突触前(涉及一氧化氮)和突触后作用位点抑制大鼠气管收缩。
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Inhibitory effect of quercetin on rat trachea contractility in vitro.
OBJECTIVES The effect of quercetin, a naturally occurring flavonoid traditionally used to treat airway diseases such as bronchial asthma, on the contractile response elicited by electrical field stimulation or carbachol in rat isolated trachea was investigated. METHODS Isolated tracheal tissue was subjected to contractions by an electrical field stimulation of 5 Hz for 30 s, 400 mA, and the responses in the presence of cumulative concentrations of quercetin (10(-6)-3x10(-4) M) were observed. The effect of quercetin was also evaluated after administration of phentolamine plus propranolol (to block alpha- and beta-adrenergic receptors), NG-nitro-L-arginine methyl ester (to block nitric oxide synthesis), capsaicin (to desensitise sensory C fibres), alpha-chymotrypsin (a proteolytic enzyme that rapidly degrades vasoactive intestinal peptide), SR140333 and SR48968 (tackykinin NK1 and NK2 receptor antagonists, respectively). KEY FINDINGS Quercetin produced a concentration-dependent inhibition of contractions induced by both carbachol and electrical field stimulation. However, quercetin was more active in inhibiting the contractions produced by electrical field stimulation than those induced by carbachol, suggesting a presynaptic site of action (in addition to a postsynaptic effect, as revealed by the inhibitory action of quercetin on carbachol-induced contractions). The inhibitory effect of quercetin on contractions induced by electrical field stimulation was unaffected by phentolamine plus propranolol, SR 140333 and SR 48968, capsaicin treatment or by the proteolytic enzyme alpha-chymotrypsin. In contrast, the nitric oxide synthase inhibitor NG-nitro-L-arginine methyl ester significantly reduced the inhibitory effect of quercetin on contractions induced by electrical field stimulation. CONCLUSIONS Quercetin inhibits rat tracheal contractility through a presynaptic (involving nitric oxide) and a postsynaptic site of action.
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