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通过磺酰胺的生物等排替代合成新型塞来昔布类似物作为有效的抗炎剂和环氧化酶抑制剂。

Synthesis of novel celecoxib analogues by bioisosteric replacement of sulfonamide as potent anti-inflammatory agents and cyclooxygenase inhibitors.

机构信息

Department of Chemistry, Kurukshetra University, Kurukshetra 136119, India.

出版信息

Bioorg Med Chem. 2013 Aug 1;21(15):4581-90. doi: 10.1016/j.bmc.2013.05.029. Epub 2013 May 25.

DOI:10.1016/j.bmc.2013.05.029
PMID:23769654
Abstract

Two series of celecoxib analogues having 1,5-diaryl relationship were synthesized. The key strategy of the molecular design was oriented towards exploring bioisosteric modifications of the sulfonamide moiety of celecoxib. First series (2a-2i) of celecoxib analogues bearing cyano functionality in place of sulfonamide moiety was synthesized by the reaction of appropriate trifluoromethyl-β-diketones (5a-5i) with 4-hydrazinylbenzonitrile hydrochloride (4) in ethanol. Cyano moiety of pyrazoles 2 was then converted into corresponding carbothioamides 3 by bubbling H2S gas in the presence of triethylamine. All the synthesized compounds (2a-2i and 3a-3i) were screened for their in vivo anti-inflammatory (AI) activity using carrageenan-induced rat paw edema assay. COX-1 and COX-2 inhibitory potency was evaluated through in vitro cyclooxygenase (COX) assays. Compounds 2a, 2b, 2c, 2e and 3c showed promising AI activity at 3-4h after the carrageenan injection that was comparable to that of the standard drug indomethacin. Although compounds 3d, 3e and 3f exhibited more pronounced COX-2 inhibition but they also inhibit COX-1 effectively thus being less selective against COX-2. Three compounds 2a, 2f and 3a were found to have a COX profile comparable to the reference drug indomethacin. However 2e, 3b, 3c and 3i compounds were the most potent selective COX-2 inhibitors of this study with 3b showing the best COX-2 profile. In order to better rationalize the action and the binding mode of these compounds, docking studies were carried out. These studies were in agreement with the biological data.

摘要

合成了两个具有 1,5-二芳基关系的塞来昔布类似物系列。分子设计的关键策略是探索塞来昔布磺酰胺部分的生物等排修饰。用适当的三氟甲基-β-二酮(5a-5i)与 4-肼基苯甲腈盐酸盐(4)在乙醇中反应,合成了第一个含有氰基取代磺酰胺部分的塞来昔布类似物系列(2a-2i)。吡唑 2 的氰基随后在三乙胺存在下通过鼓入 H2S 气体转化为相应的硫代酰胺 3。所有合成的化合物(2a-2i 和 3a-3i)均通过角叉菜胶诱导的大鼠足肿胀试验进行体内抗炎(AI)活性筛选。通过体外环氧化酶(COX)测定评估 COX-1 和 COX-2 的抑制效力。化合物 2a、2b、2c、2e 和 3c 在角叉菜胶注射后 3-4 小时表现出有希望的 AI 活性,与标准药物吲哚美辛相当。尽管化合物 3d、3e 和 3f 表现出更明显的 COX-2 抑制作用,但它们也有效抑制 COX-1,因此对 COX-2 的选择性较低。三种化合物 2a、2f 和 3a 的 COX 谱与参比药物吲哚美辛相当。然而,2e、3b、3c 和 3i 化合物是本研究中最有效的选择性 COX-2 抑制剂,其中 3b 表现出最佳的 COX-2 谱。为了更好地推理这些化合物的作用和结合模式,进行了对接研究。这些研究与生物学数据一致。

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