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Synthesis and biological evaluation of 2-aminothiazole-thiazolidinone conjugates as potential antitubercular agents

机译:2-氨基噻唑 - 噻唑烷酮缀合物作为潜在抗细胞剂的合成与生物学评价

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Aim:Mycobacterium tuberculosis, which causes tuberculosis, continues to infect millions of the global population, resulting in 1.8million deaths worldwide in 2015. Methodology: Hybrids of 2-amino-4-methylthiazole bearing 5-acetyl/5-ethyl carboxylate functionality with 5-arylidene thiazolidinone moiety (6a-k and 9a-d) were synthesized and screened for antitubercular and antimicrobial activities. Results & discussion: 5-ethyl carboxylate derivative 6k revealed half antitubercular activity (minimal inhibitory concentration=1.56g/ml) than the acetyl analog6c (minimal inhibitory concentration=0.78g/ml), however, it exhibited more potent broad spectrum antibacterial and antifungal activities in addition to its excellent safety profile with high selectivity toward M. tuberculosis over normal human lung cells. Collectively, these data suggested that compound 6k can be considered as an ideal lead compound for further optimization.
机译:目的:结核分枝杆菌,导致结核病,继续感染数百万全球人口,导致2015年全球1800万次死亡。方法:2-氨基-4-甲基噻唑轴承5-乙酰基/ 5-乙基羧酸酯功能的方法,5 合成 - 亚硝基噻唑烷酮部分(6A-K和9A-D),筛选抗细胞和抗菌活性。 结果与讨论:5-乙基羧酸酯衍生物6K显示出比乙酰基的抗亚抗体活性(最小抑制浓度= 1.56g / ml)(最小抑制浓度= 0.78g / ml),但它表现出更多有效的广谱抗菌和抗真菌 除了在正常人肺细胞上具有高选择性的高选择性的安全性外,还具有高选择性。 总的来说,这些数据表明化合物6K可以被认为是进一步优化的理想铅化合物。

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