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薄荷醇抑制 5-HT3 受体介导的电流。

Menthol inhibits 5-HT3 receptor-mediated currents.

机构信息

Laboratory of Functional Lipidomics, Departments of Pharmacology (A.A., L.A.K., B.S., M.O.) and Physiology (F.C.H.), College of Medicine and Health Sciences, UAE University, Al Ain, United Arab Emirates; Department of Molecular Neuroscience (J.C.N., N.K.), School of Systems Biology (D.V.), and Department of Computer Science (A.S.), George Mason University, Fairfax, Virginia; International Center of Molecular Physiology of the National Academy of Sciences of Ukraine, Kiev, Ukraine (Y.S.); and Department of Biological Sciences, Schmid College of Science and Engineering, Chapman University, Orange, California (K.-H.S.Y.).

出版信息

J Pharmacol Exp Ther. 2013 Nov;347(2):398-409. doi: 10.1124/jpet.113.203976. Epub 2013 Aug 21.

Abstract

The effects of alcohol monoterpene menthol, a major active ingredient of the peppermint plant, were tested on the function of human 5-hydroxytryptamine type 3 (5-HT3) receptors expressed in Xenopus laevis oocytes. 5-HT (1 μM)-evoked currents recorded by two-electrode voltage-clamp technique were reversibly inhibited by menthol in a concentration-dependent (IC50 = 163 μM) manner. The effects of menthol developed gradually, reaching a steady-state level within 10-15 minutes and did not involve G-proteins, since GTPγS activity remained unaltered and the effect of menthol was not sensitive to pertussis toxin pretreatment. The actions of menthol were not stereoselective as (-), (+), and racemic menthol inhibited 5-HT3 receptor-mediated currents to the same extent. Menthol inhibition was not altered by intracellular 1,2-bis(o-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid injections and transmembrane potential changes. The maximum inhibition observed for menthol was not reversed by increasing concentrations of 5-HT. Furthermore, specific binding of the 5-HT3 antagonist [(3)H]GR65630 was not altered in the presence of menthol (up to 1 mM), indicating that menthol acts as a noncompetitive antagonist of the 5-HT3 receptor. Finally, 5-HT3 receptor-mediated currents in acutely dissociated nodose ganglion neurons were also inhibited by menthol (100 μM). These data demonstrate that menthol, at pharmacologically relevant concentrations, is an allosteric inhibitor of 5-HT3 receptors.

摘要

薄荷醇是薄荷植物中的主要活性成分单萜醇,其对表达于人非洲爪蟾卵母细胞的 5-羟色胺 3 型(5-HT3)受体功能的影响进行了测试。用双电极电压钳技术记录 5-HT(1 μM)诱发的电流,薄荷醇以浓度依赖性方式(IC50 = 163 μM)可逆地抑制该电流。薄荷醇的作用逐渐发展,在 10-15 分钟内达到稳定状态,并且不涉及 G 蛋白,因为 GTPγS 活性保持不变,薄荷醇的作用对百日咳毒素预处理不敏感。薄荷醇的作用没有立体选择性,因为(-),(+)和外消旋薄荷醇以相同的程度抑制 5-HT3 受体介导的电流。薄荷醇抑制不受细胞内 1,2-双(邻氨基苯氧基)乙烷-N,N,N',N'-四乙酸注射和跨膜电位变化的影响。观察到的薄荷醇最大抑制作用不能通过增加 5-HT 的浓度来逆转。此外,在薄荷醇(高达 1 mM)存在下,5-HT3 拮抗剂[(3)H]GR65630 的特异性结合没有改变,表明薄荷醇作为 5-HT3 受体的非竞争性拮抗剂起作用。最后,急性分离的结状神经节神经元中的 5-HT3 受体介导的电流也被薄荷醇(100 μM)抑制。这些数据表明,在药理学相关浓度下,薄荷醇是 5-HT3 受体的变构抑制剂。

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