Medicinal Chemistry Research Laboratory, Department of Chemistry, Shiraz University of Technology, Shiraz, 71555-313, Iran.
Faculty of Pharmacy, Shiraz University of Medical Science, Medicinal and Natural Products Chemistry Research Center, P.O.Box 71345-1149, Shiraz, Iran.
Mol Divers. 2019 Feb;23(1):147-164. doi: 10.1007/s11030-018-9867-7. Epub 2018 Aug 9.
The design, synthesis, antinociceptive and β-adrenoceptor blocking activities of several eugenyloxy propanol azole derivatives have been described. In this synthesis, the reaction of eugenol with epichlorohydrin provided adducts 3 and 4 which were N-alkylated by diverse azoles to obtain the eugenyloxy propanol azole analogues in good yields. Adducts 3 and 4 were also reacted with azide ion to obtain the corresponding azide 6. The 'Click' Huisgen cycloaddition reaction of 6 with diverse alkynes afforded the title compounds in good yields. The synthesized eugenyloxy propanol azole derivatives were in vivo studied for the acute antinociception on male Spargue Dawley rats using tail-flick test. Compounds 5f, 5g, 7b and 11a exhibited potent analgesic properties in comparison with eugenol as a standard drug. In addition, all compounds were ex vivo tested for β-adrenoceptor blocking properties on isolated left atrium of male rats which exhibited partial antagonist or agonist behaviour compared to the standard drugs. The molecular docking study on the binding site of transient receptor potential vanilloid subtype 1 (TRPV1) has indicated that like capsaicin, eugenyloxy propanol azole analogues exhibited the strong affinity to bind at site of TPRV1 in a "tail-up, head-down" conformation and the presence of triazolyl moieties has played undeniable role in durable binding of these ligands to TRPV1. The in silico pharmacokinetic profile, drug likeness and toxicity predictions carried out for all compounds determined that 5g can be considered as potential antinociceptive drug candidate for future research.
已经描述了几种愈创木氧基丙醇唑衍生物的设计、合成、镇痛和β-肾上腺素能受体阻断活性。在该合成中,丁香酚与表氯醇反应提供加合物 3 和 4,它们通过各种唑进行 N-烷基化以获得良好产率的愈创木氧基丙醇唑类似物。加合物 3 和 4 也与叠氮离子反应得到相应的叠氮化物 6。6 与各种炔烃的“点击”Huisgen 环加成反应以良好的收率得到标题化合物。合成的愈创木氧基丙醇唑衍生物在雄性 Sprague Dawley 大鼠的体内研究中,使用尾部闪烁试验进行了急性镇痛作用的研究。与标准药物丁香酚相比,化合物 5f、5g、7b 和 11a 表现出较强的镇痛作用。此外,所有化合物均在雄性大鼠分离的左心房上进行了β-肾上腺素能受体阻断特性的离体研究,与标准药物相比,它们表现出部分拮抗剂或激动剂行为。对瞬时受体电位香草酸亚型 1(TRPV1)结合位点的分子对接研究表明,与辣椒素类似,愈创木氧基丙醇唑类似物以“尾向上,头向下”的构象表现出与 TRPV1 结合的强亲和力,三唑基部分的存在在这些配体与 TRPV1 的持久结合中发挥了不可否认的作用。对所有化合物进行的计算机药代动力学特征、药物相似性和毒性预测表明,5g 可以被认为是未来研究的有潜力的镇痛药物候选物。