a Department of Life and Environmental Sciences - Unit of Pharmaceutical, Pharmacological and Nutraceutical Sciences , University of Cagliari , Cagliari , Italy.
b Department of Pharmacology and Clinical Neuroscience , Umeå University , Umeå , Sweden.
J Enzyme Inhib Med Chem. 2019 Dec;34(1):562-576. doi: 10.1080/14756366.2018.1532418.
Fatty Acid Amide Hydrolase (FAAH) is a serine hydrolase that plays a key role in controlling endogenous levels of endocannabinoids. FAAH inhibition is considered a powerful approach to enhance the endocannabinoid signalling, and therefore it has been largely studied as a potential target for the treatment of neurological disorders such as anxiety or depression, or of inflammatory processes. We present two novel series of amide derivatives of ibuprofen designed as analogues of our reference FAAH inhibitor Ibu-AM5 to further explore its structure-activity relationships. In the new amides, the 2-methylpyridine moiety of Ibu-AM5 was substituted by benzylamino and piperazinoaryl moieties. The obtained benzylamides and piperazinoarylamides showed FAAH inhibition ranging from the low to high micromolar potency. The binding of the new amides in the active site of FAAH, estimated using the induced fit protocol, indicated arylpiperazinoamides binding the ACB channel and the cytosolic port, and benzylamides binding the ACB channel.
脂肪酸酰胺水解酶(FAAH)是一种丝氨酸水解酶,在控制内源性内源性大麻素水平方面发挥着关键作用。FAAH 抑制被认为是增强内源性大麻素信号的有效方法,因此它被广泛研究作为治疗焦虑或抑郁等神经紊乱或炎症过程的潜在靶点。我们提出了两种新型的布洛芬酰胺衍生物系列,设计为我们的参考 FAAH 抑制剂 Ibu-AM5 的类似物,以进一步探索其结构-活性关系。在新的酰胺中,Ibu-AM5 的 2-甲基吡啶部分被苄氨基和哌嗪基芳基部分取代。获得的苄酰胺和哌嗪基芳酰胺显示出 FAAH 抑制作用,其抑制活性从低到高微摩尔浓度不等。使用诱导契合方案估计新酰胺在 FAAH 活性部位的结合,表明芳基哌嗪酰胺结合 ACB 通道和胞质腔,而苄酰胺结合 ACB 通道。