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新型基于四唑的选择性 COX-2 抑制剂:设计、合成、抗炎活性、PGE、TNF-α、IL-6 评价及组织病理学研究。

Novel tetrazole-based selective COX-2 inhibitors: Design, synthesis, anti-inflammatory activity, evaluation of PGE, TNF-α, IL-6 and histopathological study.

机构信息

Department of Pharmaceutical Organic Chemistry, Faculty of Pharmacy, Beni-Suef University, Beni-Suef 62514, Egypt.

Department of Pharmacology, Faculty of Pharmacy, "October University for Modern Sciences and Arts (MSA)", Giza 11787, Egypt.

出版信息

Bioorg Chem. 2020 Nov;104:104308. doi: 10.1016/j.bioorg.2020.104308. Epub 2020 Sep 24.

Abstract

To search for effective and selective COX-2 inhibitors, four novel series of tetrazole derivatives were designed based on bioisosteric replacement of SONH in celecoxib with tetrazole ring incorporating different central moieties as chalcone (2a-f), isoxazole (3a-c) or pyrazole (4a-c & 5a-c). Target tetrazoles were synthesized and their structures were confirmed by spectroscopic techniques and elemental analyses. All target compounds were more selective for COX-2 isozyme than COX-1 when compared to standard drugs indomethacin and celecoxib. Compounds 3b, 3c, 4b, 4c, 5b and 5c exhibited potent in vitro COX-2 inhibitory activity (IC = 0.039-0.065 μM). Trimethoxy derivatives 3c, 4c and 5c acquired superior COX-2 selectivity index values (SI = 297.67-317.95) and were 1.1 fold higher than celecoxib (SI = 282.22). The most active six compounds were evaluated for their in vivo anti-inflammatory activity and serum levels of PGE, TNF-α and IL-6 in addition to their ulcerogenic liability and histopathological profile. At a dose of 50 mg/Kg, compounds 3c and 5c showed better anti-inflammatory activity (% edema inhibition = 29.209-42.643) than celecoxib (% edema inhibition = 28.694-40.114) at different time intervals and were less ulcerogenic (UI = 0.123 and 0.11 in sequent) than celecoxib (UI = 0.167). Also, they displayed potent inhibitory effect on the production of PGE (% inhibition = 81.042 and 82.724 in sequent) greater than celecoxib (% inhibition = 79.666). Compound 5c decreased rat serum concentrations of both TNF-α (% inhibition = 55.349) and IL-6 (% inhibition = 61.561) in a comparable or better activity to celecoxib as reference drug. Finally, docking poses of the most active compounds showed strong binding interactions and effective overall docking energy scores explaining their remarkable COX-2 inhibitory activity.

摘要

为了寻找有效的和选择性的 COX-2 抑制剂,根据 COX-2 抑制剂塞来昔布中 SONH 生物等排体被噻唑环取代的原理,设计了四个新的噻唑衍生物系列,其中包含不同的中心部分作为查耳酮(2a-f)、异恶唑(3a-c)或吡唑(4a-c 和 5a-c)。目标噻唑通过光谱技术和元素分析得到合成和结构确证。与标准药物吲哚美辛和塞来昔布相比,所有目标化合物对 COX-2 同工酶的选择性均高于 COX-1。化合物 3b、3c、4b、4c、5b 和 5c 表现出很强的体外 COX-2 抑制活性(IC = 0.039-0.065 μM)。三甲氧基衍生物 3c、4c 和 5c 获得了优越的 COX-2 选择性指数值(SI = 297.67-317.95),比塞来昔布(SI = 282.22)高 1.1 倍。在 50mg/kg 剂量下,与塞来昔布相比,6 种最活跃的化合物在不同时间间隔内表现出更好的抗炎活性(%水肿抑制=29.209-42.643),并且溃疡形成性较低(UI = 0.123 和 0.11 连续)。此外,它们对 PGE 的产生具有很强的抑制作用(%抑制=81.042 和 82.724 连续),比塞来昔布(%抑制=79.666)更强。化合物 5c 降低了大鼠血清中 TNF-α(%抑制=55.349)和 IL-6(%抑制=61.561)的浓度,其活性与作为参考药物的塞来昔布相当或更好。最后,最活跃的化合物的对接构象显示出很强的结合相互作用和有效的整体对接能量评分,解释了它们显著的 COX-2 抑制活性。

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