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豚鼠肺膜中L-薄荷醇结合位点的鉴定。

Identification of the L-menthol binding site in guinea-pig lung membranes.

作者信息

Wright C E, Bowen W P, Grattan T J, Morice A H

机构信息

Department of Medicine, Northern General Hospital, Sheffield.

出版信息

Br J Pharmacol. 1998 Feb;123(3):481-6. doi: 10.1038/sj.bjp.0701642.

Abstract
  1. L-Menthol inhibits both neurokinin A and capsaicin-induced bronchoconstriction in the guinea-pig and relaxes pre-constricted guinea-pig isolated bronchi. Structure-activity relationships have been defined for the action of (-)-menthol and related compounds on cold receptors, suggesting an action of L-menthol at a pharmacological receptor. We have performed radioligand binding studies to characterize the binding sites for [3H]-L-menthol in whole cell membranes prepared from guinea-pig lung tissue. 2. In kinetic studies. [3H]-L-menthol was found to bind rapidly and reversibly. Binding of [3H]-L-menthol to lung membranes was found to be time-dependent becoming fully associated to its site within 40 min, and half-maximum association occurred within 8 min (t1/2=8 min). [3H]-L-menthol was fully dissociated from its binding site within 8 min, (t1/2=2 min). 3. Inhibition studies presented a pharmacological profile of the 'L-menthol site'. Capsaicin, capsazepine, D-menthol, eugenol, SCH23390 and camphor were all found to displace [3H]-L-menthol binding. In contrast WS3, noradrenaline, 5-hydroxytryptamine, spiperone, flunarazine, bepridil and nicardipine were without effect. 4. We have identified a L-menthol binding site in the guinea-pig, which may represent a site common to a variety of compounds.
摘要
  1. L-薄荷醇可抑制豚鼠体内神经激肽A和辣椒素诱导的支气管收缩,并使预先收缩的豚鼠离体支气管舒张。已确定了(-)-薄荷醇及相关化合物对冷感受器作用的构效关系,提示L-薄荷醇作用于药理学受体。我们进行了放射性配体结合研究,以表征豚鼠肺组织制备的全细胞膜中[3H]-L-薄荷醇的结合位点。2. 在动力学研究中,发现[3H]-L-薄荷醇能快速、可逆地结合。[3H]-L-薄荷醇与肺膜的结合呈时间依赖性,40分钟内完全与其位点结合,8分钟内达到最大结合量的一半(t1/2 = 8分钟)。[3H]-L-薄荷醇在8分钟内完全从其结合位点解离(t1/2 = 2分钟)。3. 抑制研究显示了“L-薄荷醇位点”的药理学特征。发现辣椒素、辣椒平、D-薄荷醇、丁香酚、SCH23390和樟脑均能取代[3H]-L-薄荷醇的结合。相比之下,WS3、去甲肾上腺素、5-羟色胺、螺哌隆、氟桂利嗪、苄普地尔和尼卡地平则无此作用。4. 我们在豚鼠中鉴定出一个L-薄荷醇结合位点,它可能代表多种化合物共有的位点。

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