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Synthesis, Antibacterial, Antioxidant Activity and QSAR Studies of Novel 2-Arylidenehydrazinyl-4-arylthiazole Analogues

机译:新型2-丙烯叉肼基-4-芳基噻唑类似物的合成,抗菌,抗氧化活性和QSAR研究

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A novel series of 2-arylidenehydrazinyl-4-arylthiazole analogues (3a-p) was designed and synthesized in excellent yields using a rapid, simple, efficient methodology. Sixteen novel compounds were screened for in vitro antimicrobial activities against eleven bacteria, namely, Staphylococcus aureus, Listeria monocytogenes, Enterococcus faecalis, Bacillus subtilis, Klebsiella pneumonia, Citrobacter freundii, Cronobacter sakazakii, Salmonella enteritidis, Escherichia coli, Yersinia pestis, and Pseudomonas aeruginosa. All 16 compounds showed significant anti-bacterial activities against both Gram-positive and Gram-negative bacteria. In particular, compound 3g showed potent inhibition of E. coli and K. pneumonia, compound 3i inhibited E. faecalis, compound 3n S. tythi and E. faecalis, and compound 3c E. coli and C. sakazakii. In fact, our results indicate that most of the compounds synthesized exhibit strong antibacterial activity. The qualitative structure-antibacterial activity relationships (QSAR) were studied using the physicochemical and quantum-chemical parameters of the ab initio Hartree-Fock model at the RHF/6-31G level of theory. A good qualitative correlation between predicted physicochemical parameters (logP and polar surface area (PSA)) and antibacterial activity has been found. The synthesized compounds were also evaluated for antioxidant activity. Compounds 3j, 3a and 3i exhibited the greatest antioxidant activity, with IC50 values of 0.66, 0.81, and 1.08 mu m, respectively, which were comparable to that of ascorbic acid (IC50 0.87 mu m). The promising antibacterial and antioxidant activities of some of these synthesized 2-arylidenehydrazinyl-4-arylthiazole derivatives, together with the results of quantum-chemical studies, could be helpful for the development of drugs to combat diseases caused by microorganisms and oxidative stress.
机译:使用快速,简单,有效的方法,设计并合成了一系列新颖的2-芳基肼基-4-芳基噻唑类似物(3a-p)。筛选了16种新化合物的抗11种细菌的体外抗菌活性,这些细菌分别为金黄色葡萄球菌,单核细胞增生李斯特菌,粪肠球菌,枯草芽孢杆菌,肺炎克雷伯菌,弗氏柠檬酸杆菌,阪崎肠杆菌,肠沙门氏菌,鼠疫杆菌和耶尔森氏菌。所有16种化合物对革兰氏阳性和革兰氏阴性细菌均显示出显着的抗菌活性。特别地,化合物3g显示出对大肠杆菌和肺炎克雷伯氏菌的有效抑制,化合物3i抑制粪便中的大肠杆菌,化合物3n tythi和粪便中的大肠杆菌以及化合物3c大肠杆菌和阪崎肠杆菌。实际上,我们的结果表明,大多数合成的化合物都具有很强的抗菌活性。使用从头算的Hartree-Fock模型的理化和量子化学参数,在RHF / 6-31G的理论水平上研究了定性结构与抗菌活性的关系(QSAR)。已发现预测的理化参数(logP和极性表面积(PSA))与抗菌活性之间具有良好的质量相关性。还评估了合成的化合物的抗氧化活性。化合物3j,3a和3i表现出最大的抗氧化活性,IC50值分别为0.66、0.81和1.08μm,与抗坏血酸(IC50为0.87μm)相当。这些合成的2-芳基亚甲基肼基-4-芳基噻唑衍生物中某些具有前途的抗菌和抗氧化活性,以及​​量子化学研究的结果,可能有助于开发对抗由微生物和氧化应激引起的疾病的药物。

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