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含脲和氨基甲酸酯的4-苯胺基哌啶支架的镇痛效果评估。

Evaluation of the analgesic effect of 4-anilidopiperidine scaffold containing ureas and carbamates.

作者信息

Monti Ludovica, Stefanucci Azzurra, Pieretti Stefano, Marzoli Francesca, Fidanza Lorenzo, Mollica Adriano, Mirzaie Sako, Carradori Simone, De Petrocellis Luciano, Schiano Moriello Aniello, Benyhe Sándor, Zádor Ferenc, Szűcs Edina, Ötvös Ferenc, Erdei Anna I, Samavati Reza, Dvorácskó Szabolcs, Tömböly Csaba, Novellino Ettore

机构信息

a Dipartimento di Chimica e Tecnologia del Farmaco , Sapienza Università di Roma , Rome , Italy .

b Dipartimento di Chimica , Sapienza Università di Roma , Rome , Italy .

出版信息

J Enzyme Inhib Med Chem. 2016 Dec;31(6):1638-47. doi: 10.3109/14756366.2016.1160902. Epub 2016 Apr 11.

Abstract

Fentanyl is a powerful opiate analgesic typically used for the treatment of severe and chronic pain, but its prescription is strongly limited by the well-documented side-effects. Different approaches have been applied to develop strong analgesic drugs with reduced pharmacologic side-effects. One of the most promising is the design of multitarget drugs. In this paper we report the synthesis, characterization and biological evaluation of twelve new 4-anilidopiperidine (fentanyl analogues). In vivo hot-Plate test, shows a moderate antinociceptive activity for compounds OMDM585 and OMDM586, despite the weak binding affinity on both μ and δ-opioid receptors. A strong inverse agonist activity in the GTP-binding assay was revealed suggesting the involvement of alternative systems in the brain. Fatty acid amide hydrolase inhibition was evaluated, together with binding assays of cannabinoid receptors. We can conclude that compounds OMDM585 and 586 are capable to elicit antinociception due to their multitarget activity on different systems involved in pain modulation.

摘要

芬太尼是一种强效阿片类镇痛药,通常用于治疗严重和慢性疼痛,但其处方受到充分记录的副作用的强烈限制。人们已经采用了不同的方法来开发具有降低药理副作用的强效镇痛药。最有前景的方法之一是设计多靶点药物。在本文中,我们报告了十二种新型4-苯胺基哌啶(芬太尼类似物)的合成、表征和生物学评价。体内热板试验表明,化合物OMDM585和OMDM586具有中等程度的抗伤害感受活性,尽管它们对μ和δ阿片受体的结合亲和力较弱。在GTP结合试验中显示出强烈的反向激动剂活性,表明大脑中存在其他系统参与其中。评估了脂肪酸酰胺水解酶抑制作用以及大麻素受体的结合试验。我们可以得出结论,化合物OMDM585和586能够引发抗伤害感受,这是由于它们对参与疼痛调节的不同系统具有多靶点活性。

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