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新型苯并咪唑噻唑杂合体:具有强力抗炎活性的特权支架,可同时抑制环氧化酶和 15-脂氧合酶。

Novel class of benzimidazole-thiazole hybrids: The privileged scaffolds of potent anti-inflammatory activity with dual inhibition of cyclooxygenase and 15-lipoxygenase enzymes.

机构信息

Department of Pharmaceutical Organic Chemistry, Faculty of Pharmacy, Assiut University, Assiut 71526, Egypt.

Histology and Cell Biology Department, Faculty of Medicine, Assiut University, Assiut 71111, Egypt.

出版信息

Bioorg Med Chem. 2020 Apr 1;28(7):115403. doi: 10.1016/j.bmc.2020.115403. Epub 2020 Feb 26.

Abstract

The present study includes design and synthesis of new molecular hybrids of 2-methylthiobenzimidazole linked to various anti-inflammatory pharmacophores through 2-aminothiazole linker, to investigate the effect of such molecular variation on cyclooxygenase (COX) and 15-lipoxygenase (15-LOX) enzymes inhibition as well as in vivo anti-inflammatory activity. The chemical structures of new hybrids were confirmed using different spectroscopic tools and elemental analyses. Benzimidazole-thiazole hybrids linked to acetyl moiety 13, phenyl thiosemicarbazone 14, 1,3-thiazolines 15a-c and 4-thiazolidinone 16 exhibited significant COX-2 inhibition (IC = 0.045-0.075 µM) with significant COX-2 selectivity indices (SI = 142-294). All hybrids revealed potent 15-LOX inhibitory activity (IC = 1.67-6.56 µM). Benzimidazole-thiazole hybrid 15b was the most potent dual COX-2 (IC = 0.045 µM, SI = 294) inhibitor approximate to celecoxib (COX-2; IC = 0.045 µM, SI = 327), with double inhibitory activity versus 15-LOX enzyme (IC = 1.67 µM) relative to quercetin (IC = 3.34 µM). Three hybrids (14, 15b &16) were selected for in vivo screening using carrageenan-induced paw edema method. Benzimidazole-thiazole hybrid linked to 4-thiazolidinone 16 showed the maximum edema inhibition at both 3 h and 4 h intervals as well (~119% and 102% relative to indomethacin, respectively). The gastric ulcerogenic effect of benzimidazole-thiazole hybrid 16 was estimated compared with indomethacin showing superior gastrointestinal safety profile. In bases of molecular modeling; all new active hybrids were subjected to docking simulation into active sites of COX-2 and 15-LOX enzymes to study the binding mode of these novel potent dual COX-2/15-LOX inhibitors.

摘要

本研究设计并合成了 2-甲基硫代苯并咪唑与各种抗炎药效团通过 2-氨基噻唑连接子连接的新型分子杂合体,以研究这种分子变化对环氧化酶(COX)和 15-脂氧合酶(15-LOX)抑制的影响以及体内抗炎活性。新杂合体的化学结构通过不同的光谱工具和元素分析得到证实。与乙酰基 13、苯硫代缩氨基脲 14、1,3-噻唑啉 15a-c 和 4-噻唑烷酮 16 相连的苯并咪唑-噻唑杂合体表现出显著的 COX-2 抑制作用(IC=0.045-0.075μM),且具有显著的 COX-2 选择性指数(SI=142-294)。所有杂合体均表现出强大的 15-LOX 抑制活性(IC=1.67-6.56μM)。苯并咪唑-噻唑杂合体 15b 是最有效的双重 COX-2(IC=0.045μM,SI=294)抑制剂,与塞来昔布(COX-2;IC=0.045μM,SI=327)相似,对 15-LOX 酶的双重抑制活性(IC=1.67μM)优于槲皮素(IC=3.34μM)。使用角叉菜胶诱导的足肿胀法对三种杂合体(14、15b 和 16)进行了体内筛选。苯并咪唑-噻唑杂合体连接的 4-噻唑烷酮 16 在 3 小时和 4 小时的间隔内均表现出最大的水肿抑制作用(相对于吲哚美辛分别为 119%和 102%)。与吲哚美辛相比,苯并咪唑-噻唑杂合体 16 的胃溃疡形成作用被估计具有优越的胃肠道安全性。基于分子建模;将所有新的活性杂合体进行对接模拟到 COX-2 和 15-LOX 酶的活性部位,以研究这些新型强效双重 COX-2/15-LOX 抑制剂的结合模式。

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