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Synthesis and molecular docking of new imidazoquinazolinones as analgesic agents and selective COX-2 inhibitors

机译:新型咪唑喹唑啉酮作为镇痛剂和选择性COX-2抑制剂的合成与分子对接

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摘要

The discovery of new generation of selective COX-2 inhibitors with potential analgesic and anti-inflammatory activity and minimal side effects is a major interest. Materials & methods: Novel imidazole and imidazo[1,5-a] quinazoline derivatives were prepared and evaluated for their analgesic and anti-inflammatory activities. COX-1/COX-2 isozyme selectivity testing and molecular docking were performed. Key physicochemical parameters were calculated. Results: All tested compounds exhibited significant activities compared with indomethacin as reference drug. Pharmacological evaluation showed that compounds 3c and 14c possess promising analgesic activity, pronouncing anti-inflammatory effect and reasonable COX-2 selectivity. Molecular docking attributed their good activity to their hydrogen bonding interaction with key amino acids in COX isozymes Arg120, Tyr355 and Ser530. Most compounds obeyed 'Lipinski's rule of five' and possess promising pharmacokinetic properties.
机译:发现具有潜在镇痛和抗炎活性和最小副作用的新一代选择性COX-2抑制剂是主要兴趣。 材料和方法:制备新型咪唑和咪唑喹唑胺衍生物,并评估其镇痛和抗炎活动。 进行COX-1 / COX-2同工酶选择性测试和分子对接。 计算主要物理化学参数。 结果:与吲哚美辛作为参考药物相比,所有测试化合物表现出显着的活动。 药理评价显示,化合物3C和14C具有有前途的镇痛活性,发出抗炎作用和合理的COX-2选择性。 分子对接将它们的良好活性与Cox同工酶Arg120,Tyr355和Ser530中的氢键合相互作用与其氢键相互作用。 大多数化合物服从“Lipinski的5”规则,并具有有前途的药代动力学性质。

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