Grupo de Pesquisa em Inovação Terapêutica-GPIT, Universidade Federal de Pernambuco, Pernambuco, Brazil.
Bioorg Med Chem. 2010 Jun 1;18(11):3805-11. doi: 10.1016/j.bmc.2010.04.045. Epub 2010 Apr 21.
Eight new 5-arylidene-3-benzyl-thiazolidine-2,4-diones with halide groups on their benzyl rings were synthesized and assayed in vivo to investigate their anti-inflammatory activities. These compounds showed considerable biological efficacy when compared to rosiglitazone, a potent and well-known agonist of PPARgamma, which was used as a reference drug. This suggests that the substituted 5-arylidene and 3-benzylidene groups play important roles in the anti-inflammatory properties of this class of compounds. Docking studies with these compounds indicated that they exhibit specific interactions with key residues located in the site of the PPARgamma structure, which corroborates the hypothesis that these molecules are potential ligands of PPARgamma. In addition, competition binding assays showed that four of these compounds bound directly to the ligand-binding domain of PPARgamma, with reduced affinity when compared to rosiglitazone. An important trend was observed between the docking scores and the anti-inflammatory activities of this set of molecules. The analysis of the docking results, which takes into account the hydrophilic and hydrophobic interactions between the ligands and the target, explained why the 3-(2-bromo-benzyl)-5-(4-methanesulfonyl-benzylidene)-thiazolidine-2,4-dione compound had the best activity and the best docking score. Almost all of the stronger hydrophilic interactions occurred between the substituted 5-arylidene group of this compound and the residues of the binding site.
合成了八个新的 5-芳基亚甲基-3-苄基噻唑烷-2,4-二酮,其苄基环上带有卤原子,在体内进行了抗炎活性检测。与作为参考药物的 PPARγ 有效且知名激动剂罗格列酮相比,这些化合物表现出相当大的生物功效。这表明取代的 5-芳基亚甲基和 3-亚苄基在这类化合物的抗炎特性中起着重要作用。对这些化合物进行对接研究表明,它们与位于 PPARγ 结构位点的关键残基表现出特异性相互作用,这证实了这些分子是 PPARγ 的潜在配体的假设。此外,竞争结合测定表明,这四种化合物直接与 PPARγ 的配体结合域结合,与罗格列酮相比亲和力降低。在这组分子的抗炎活性和对接评分之间观察到一个重要的趋势。对接结果的分析考虑了配体和靶标之间的亲水和疏水相互作用,解释了为什么 3-(2-溴苄基)-5-(4-甲磺酰基苄基)-噻唑烷-2,4-二酮化合物具有最佳的活性和最佳的对接评分。几乎所有较强的亲水相互作用都发生在该化合物的取代 5-芳基亚甲基与结合位点的残基之间。