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用于治疗镇痛和炎症的4-(4-氯噻吩-2-基)噻唑-2-胺衍生物的修饰:合成及[此处原文缺失部分内容]、[此处原文缺失部分内容]和[此处原文缺失部分内容]研究

Modification of 4-(4-chlorothiophen-2-yl)thiazol-2-amine derivatives for the treatment of analgesia and inflammation: synthesis and , , and studies.

作者信息

Mahnashi Mater H, Rashid Umer, Almasoudi Hassan Hussain, Nahari Mohammed H, Ahmad Imran, Binshaya Abdulkarim S, Abdulaziz Osama, Alsuwat Meshari A, Jan Muhammad Saeed, Sadiq Abdul

机构信息

Department of Pharmaceutical Chemistry, Pharmacy School, Najran University, Najran, Saudi Arabia.

Department of Chemistry, COMSATS University Islamabad, Abbottabad, Pakistan.

出版信息

Front Pharmacol. 2024 Feb 29;15:1366695. doi: 10.3389/fphar.2024.1366695. eCollection 2024.

Abstract

Inflammation is a protective response to a variety of infectious agents. To develop a new anti-inflammatory drug, we explored a pharmacologically important thiazole scaffold in this study. In a multi-step synthetic approach, we synthesized seven new thiazole derivatives (-). Initially, we examined the anti-inflammatory potentials of our compounds using COX-1, COX-2, and 5-LOX enzyme assays. After confirmation, the potential compounds were subjected to analgesic and anti-inflammatory studies. The hot plate method was used for analgesia, and carrageenan-induced inflammation was also assayed. Overall, all our compounds proved to be potent inhibitors of COX-2 compared to celecoxib (IC 0.05 μM), exhibiting IC values in the range of 0.76-9.01 μM .Compounds , , and were dominant and selective COX-2 inhibitors with the lowest IC values and selectivity index (SI) values of 42, 112, and 124, respectively. Similarly, in the COX-1 assay, our compounds were relatively less potent but still encouraging. Standard aspirin exhibited an IC value of 15.32 μM. In the 5-LOX results, once again, compounds and were dominant with IC values of 23.08 and 38.46 μM, respectively. Standard zileuton exhibited an IC value of 11.00 μM. Based on the COX/LOX and SI potencies, the compounds and were subjected to analgesic and anti-inflammatory studies. Compounds and at concentrations of 5, 10, and 20 mg/kg body weight were significant in animal models. Furthermore, we explored the potential role of compounds and in various phlogistic agents. Similarly, both compounds and were also significantly potent in the anti-nociceptive assay. The molecular docking interactions of these two compounds with the target proteins of COX and LOX further strengthened their potential for use in COX/LOX pathway inhibitions.

摘要

炎症是对多种感染因子的一种保护性反应。为开发一种新型抗炎药物,我们在本研究中探索了一种具有药理学重要性的噻唑骨架。通过多步合成方法,我们合成了七种新的噻唑衍生物(-)。首先,我们使用COX-1、COX-2和5-LOX酶测定法检测了我们化合物的抗炎潜力。确认后,对有潜力的化合物进行了镇痛和抗炎研究。采用热板法进行镇痛研究,并对角叉菜胶诱导的炎症进行了测定。总体而言,与塞来昔布(IC 0.05 μM)相比,我们所有的化合物都被证明是COX-2的有效抑制剂,IC值在0.76 - 9.01 μM范围内。化合物 、 和 是主要的选择性COX-2抑制剂,IC值最低,选择性指数(SI)分别为42、112和124。同样,在COX-1测定中,我们的化合物效力相对较低,但仍令人鼓舞。标准阿司匹林的IC值为15.32 μM。在5-LOX结果中,化合物 和 再次占主导地位,IC值分别为23.08和38.46 μM。标准齐留通的IC值为11.00 μM。基于COX/LOX和SI效力,化合物 和 进行了镇痛和抗炎研究。化合物 和 在体重5、10和20 mg/kg的浓度下在动物模型中具有显著效果。此外,我们探索了化合物 和 在各种炎症介质中的潜在作用。同样,化合物 和 在抗伤害感受测定中也具有显著效力。这两种化合物与COX和LOX靶蛋白的分子对接相互作用进一步增强了它们在COX/LOX途径抑制中的应用潜力。

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