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作为潜在的非酸性抗炎、镇痛和抗菌剂的安替比林的一些噻唑基和噻二唑基衍生物的设计与合成。

Design and synthesis of some thiazolyl and thiadiazolyl derivatives of antipyrine as potential non-acidic anti-inflammatory, analgesic and antimicrobial agents.

作者信息

Rostom Sherif A F, el-Ashmawy Ibrahim M, Abd el Razik Heba A, Badr Mona H, Ashour Hayam M A

机构信息

Department of Medicinal Chemistry, Faculty of Medicine, King Abdulaziz University, PO Box 80205, Jeddah 21589, Saudi Arabia.

出版信息

Bioorg Med Chem. 2009 Jan 15;17(2):882-95. doi: 10.1016/j.bmc.2008.11.035. Epub 2008 Nov 20.

Abstract

The synthesis of two groups of structure hybrids comprising basically the antipyrine moiety attached to either polysubstituted thiazole or 2,5-disubstituted-1,3,4-thiadiazole counterparts through various linkages is described. Twelve out of the newly synthesized compounds were evaluated for their anti-inflammatory activity using two different screening protocols; namely, the formalin-induced paw edema and the turpentine oil-induced granuloma pouch bioassays, using diclofenac Na as a reference standard. The ulcerogenic effects and acute toxicity (ALD(50)) values of these compounds were also determined. Meanwhile, the analgesic activity of the same compounds was evaluated using the rat tail withdrawal technique. Additionally, the synthesized compounds were evaluated for their in vitro antimicrobial activity. In general, compounds belonging to the thiazolylantipyrine series exhibited better biological activities than their thiadiazolyl structure variants. Collectively, compounds 6, 10, 26, and 27 proved to display distinctive anti-inflammatory and analgesic profiles with a fast onset of action. All of the tested compounds revealed super GI safety profile and are well tolerated by the experimental animals with high safety margin (ALD(50)>3.0 g/kg). Meanwhile, compounds 7, 10, 11, and 23 are considered to be the most active broad spectrum antimicrobial members in this study. Compound 10 could be identified as the most biologically active member within this study with an interesting dual anti-inflammatory analgesic and antibacterial profile.

摘要

描述了两组结构杂化物的合成,这些杂化物基本上是通过各种连接基团将安替比林部分连接到多取代噻唑或2,5 - 二取代 - 1,3,4 - 噻二唑对应物上。使用两种不同的筛选方案对新合成的12种化合物进行了抗炎活性评估;即福尔马林诱导的爪肿胀和松节油诱导的肉芽肿袋生物测定,以双氯芬酸钠作为参考标准。还测定了这些化合物的致溃疡作用和急性毒性(半数致死量(ALD(50))值)。同时,使用大鼠甩尾技术评估了相同化合物的镇痛活性。此外,对合成的化合物进行了体外抗菌活性评估。一般来说,噻唑基安替比林系列的化合物比其噻二唑基结构变体表现出更好的生物活性。总体而言,化合物6、10、26和27被证明具有独特的抗炎和镇痛特性,起效迅速。所有测试化合物均显示出超高的胃肠道安全性,实验动物对其耐受性良好,安全 margin 高(ALD(50)>3.0 g/kg)。同时,化合物7、10、11和23被认为是本研究中最具活性的广谱抗菌成员。化合物10可被确定为该研究中最具生物活性的成员,具有有趣的抗炎镇痛和抗菌双重特性。

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