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Bosn J Basic Med Sci. 2017 Aug 20;17(3):194-202. doi: 10.17305/bjbms.2017.2071.
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Effects of 1-(2-trifluoromethylphenyl)-imidazole (TRIM) on receptor-independent and -dependent contractile responses in rat aorta.1-(2-三氟甲基苯基)-咪唑(TRIM)对大鼠主动脉受体非依赖性和依赖性收缩反应的影响。
Turk J Med Sci. 2016 Jun 23;46(4):1209-14. doi: 10.3906/sag-1502-109.
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Rat aorta as a pharmacological tool for in vitro and in vivo studies.大鼠主动脉作为用于体外和体内研究的药理学工具。
Life Sci. 2016 Jan 15;145:190-204. doi: 10.1016/j.lfs.2015.12.043. Epub 2015 Dec 28.
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Martindale: The Complete Drug Reference Brayfield Alison (Ed) Martindale: The Complete Drug Reference £459 4,688pp Pharmaceutical Press 9780857111395 0857111396 [Formula: see text].《马丁代尔药物大典》 布雷菲尔德·艾莉森(主编) 《马丁代尔药物大典》 459英镑 4688页 制药出版社 9780857111395 0857111396 [配方:见正文]
Emerg Nurse. 2014 Sep;22(5):12. doi: 10.7748/en.22.5.12.s13.
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Polypharmacology - foe or friend?多靶标药物疗法——敌是友?
J Med Chem. 2013 Nov 27;56(22):8955-71. doi: 10.1021/jm400856t. Epub 2013 Aug 22.
5
Rebound congestion and rhinitis medicamentosa: nasal decongestants in clinical practice. Critical review of the literature by a medical panel.反弹性充血和药物性鼻炎:临床实践中的鼻腔减充血剂。医学专家组对文献的批判性回顾。
Eur Ann Otorhinolaryngol Head Neck Dis. 2013 Jun;130(3):137-44. doi: 10.1016/j.anorl.2012.09.005. Epub 2013 Feb 1.
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Automated design of ligands to polypharmacological profiles.配体的多药效特性自动化设计。
Nature. 2012 Dec 13;492(7428):215-20. doi: 10.1038/nature11691.
7
Serotonin receptors and heart valve disease--it was meant 2B.血清素受体与心脏瓣膜病——本来应该是 2B 型。
Pharmacol Ther. 2011 Nov;132(2):146-57. doi: 10.1016/j.pharmthera.2011.03.008. Epub 2011 Apr 2.
8
Parallel functional activity profiling reveals valvulopathogens are potent 5-hydroxytryptamine(2B) receptor agonists: implications for drug safety assessment.平行功能活性分析表明瓣膜病原体是强效5-羟色胺(2B)受体激动剂:对药物安全性评估的意义。
Mol Pharmacol. 2009 Oct;76(4):710-22. doi: 10.1124/mol.109.058057. Epub 2009 Jul 1.
9
Pharmacological characterization of postjunctional alpha-adrenoceptors in human nasal mucosa.人鼻黏膜中节后α-肾上腺素能受体的药理学特性
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10
5-Hydroxytryptamine1B receptor-mediated contraction of rabbit saphenous vein and basilar artery: role of vascular endothelium.5-羟色胺1B受体介导的兔隐静脉和基底动脉收缩:血管内皮的作用
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非典型拟交感神经药物 lerimazoline 主要通过 5-HT2A 受体介导大鼠主动脉的收缩作用。

Atypical sympathomimetic drug lerimazoline mediates contractile effects in rat aorta predominantly by 5-HT2A receptors.

机构信息

Department of Pharmacology, Faculty of Pharmacy, University of Belgrade, Belgrade, Serbia.

出版信息

Bosn J Basic Med Sci. 2017 Aug 20;17(3):194-202. doi: 10.17305/bjbms.2017.2071.

DOI:10.17305/bjbms.2017.2071
PMID:28628756
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5581967/
Abstract

Lerimazoline is a sympathomimetic drug that belongs to the imidazoline class of compounds, and is used as a nasal decongestant. Studies on lerimazoline are rare, and its pharmacological profile is not completely understood. Here, we analyzed the affinity of lerimazoline for dopamine receptor D2, serotonin 5-HT1A and 5-HT2A receptors and α1-adrenoceptor, and investigated lerimazoline contractile effects in isolated rat thoracic aorta. We also determined the effect of several antagonists on the contractile response to lerimazoline, including prazosin (α1-adrenoceptor antagonist), RX 821002 and rauwolscine (α2-adrenoceptor antagonists), JP 1302 (α2C-adrenoceptor antagonist), methiothepin (non-selective 5-HT receptor antagonist), SB 224289 (5-HT1B receptor antagonist), BRL 15572 (5-HT1D receptor antagonist), and ketanserin (5-HT2A receptor antagonist). Lerimazoline displayed high affinity for the 5-HT1A receptor (Ki = 162.5 nM), similar to the previously reported affinity for the 5-HT1D receptor. Binding affinity estimates (Ki) for α1, 5-HT2A, and D2 receptors were 6656, 4202 and 3437.5 nM, respectively (the literature reported Ki for 5-HT1B receptor is 3480 nM). Lerimazoline caused concentration-dependent contractions in 70% of preparations, varying in the range between 40% and 55% of the maximal contraction elicited by phenylephrine. While prazosin reduced the maximum contractile response to lerimazoline, rauwolscine showed a non-significant trend in reduction of the response. Both ketanserin (10 nM and 1 µM) and methiothepin strongly suppressed the maximum response to lerimazoline. Overall, our results suggest that 5-HT2A and, less distinctly, α1-adrenergic receptors are involved in the lerimazoline-induced contractions, which makes lerimazoline an "atypical" decongestant.

摘要

利拉唑啉是一种拟交感胺药物,属于咪唑啉类化合物,用作鼻减充血剂。关于利拉唑啉的研究很少,其药理学特征尚不完全清楚。在这里,我们分析了利拉唑啉与多巴胺受体 D2、5-羟色胺 5-HT1A 和 5-HT2A 受体以及 α1-肾上腺素受体的亲和力,并研究了利拉唑啉在分离的大鼠胸主动脉中的收缩作用。我们还确定了几种拮抗剂对利拉唑啉收缩反应的影响,包括哌唑嗪(α1-肾上腺素受体拮抗剂)、RX 821002 和rau-wolscine(α2-肾上腺素受体拮抗剂)、JP 1302(α2C-肾上腺素受体拮抗剂)、甲硫噻吨(非选择性 5-HT 受体拮抗剂)、SB 224289(5-HT1B 受体拮抗剂)、BRL 15572(5-HT1D 受体拮抗剂)和酮色林(5-HT2A 受体拮抗剂)。利拉唑啉对 5-HT1A 受体具有高亲和力(Ki = 162.5 nM),与先前报道的对 5-HT1D 受体的亲和力相似。α1、5-HT2A 和 D2 受体的结合亲和力估计值(Ki)分别为 6656、4202 和 3437.5 nM(文献报道的 5-HT1B 受体 Ki 值为 3480 nM)。利拉唑啉引起浓度依赖性收缩,在 70%的制剂中,收缩幅度在苯肾上腺素引起的最大收缩幅度的 40%至 55%之间变化。虽然哌唑嗪降低了利拉唑啉的最大收缩反应,但 rau-wolscine 显示出降低反应的非显著趋势。酮色林(10 nM 和 1 µM)和甲硫噻吨均强烈抑制利拉唑啉的最大反应。总的来说,我们的结果表明 5-HT2A 受体,以及不太明显的 α1-肾上腺素能受体参与了利拉唑啉引起的收缩,这使得利拉唑啉成为一种“非典型”的减充血剂。