Organic and Medicinal Chemistry Department, Faculty of Pharmacy, University of Sadat City, Menoufia 32958, Egypt.
Department of Chemistry, Faculty of Science, Minia University, El-Minia 61519, Egypt.
Molecules. 2022 Oct 21;27(20):7126. doi: 10.3390/molecules27207126.
Synthesis of thiazolidinone based on quinolone moiety was established starting from 4-hydroxyquinol-2-ones. The strategy started with the reaction of ethyl bromoacetate with 4-hydroxyquinoline to give the corresponding ethyl oxoquinolinyl acetates, which reacted with hydrazine hydrate to afford the hydrazide derivatives. Subsequently, hydrazides reacted with isothiocyanate derivatives to give the corresponding ,-disubstituted thioureas. Finally, on subjecting the ,-disubstituted thioureas with dialkyl acetylenedicarboxylates, cyclization occurred, and thiazolidinone derivatives were obtained in good yields. The two series based on quinolone moiety, one containing ,-disubstituted thioureas and the other containing thiazolidinone functionalities, were screened for their in vitro urease inhibition properties using thiourea and acetohydroxamic acid as standard inhibitors. The inhibition values of the synthesized thioureas and thiazolidinones exhibited moderate to good inhibitory effects. The structure-activity relationship revealed that -methyl quinolonyl moiety exhibited a superior effect, since it was proved to be the most potent inhibitor in the present series achieving (IC = 1.83 ± 0.79 µM). The previous compound exhibited relatively much greater activity, being approximately 12-fold more potent than thiourea and acetohydroxamic acid as references. Molecular docking analysis showed a good protein-ligand interaction profile against the urease target (PDBID: 4UBP), emphasizing the electronic and geometric effect of ,-disubstituted thiourea.
基于喹诺酮部分的噻唑烷酮的合成立足于 4-羟基喹啉-2-酮。该策略从乙基溴代乙酸与 4-羟基喹啉反应开始,得到相应的乙基氧代喹啉基乙酸酯,然后与水合肼反应得到酰腙衍生物。随后,酰腙与异硫氰酸酯衍生物反应得到相应的,-二取代硫脲。最后,将,-二取代硫脲与二烷基丙炔二羧酸酯进行环化反应,以良好的产率得到噻唑烷酮衍生物。以硫脲和乙酰羟肟酸为标准抑制剂,对基于喹诺酮部分的两个系列(一个含有,-二取代硫脲,另一个含有噻唑烷酮官能团)进行体外脲酶抑制活性筛选。合成的硫脲和噻唑烷酮的抑制值表现出中等至良好的抑制效果。构效关系表明,-甲基喹啉酮部分表现出优越的效果,因为它被证明是本系列中最有效的抑制剂,其抑制常数 (IC) 为 1.83 ± 0.79 µM。该前体化合物表现出相对更高的活性,其效力约为硫脲和乙酰羟肟酸作为参考的 12 倍。分子对接分析显示出与脲酶靶标(PDBID:4UBP)的良好的蛋白-配体相互作用,强调了,-二取代硫脲的电子和几何效应。