首页> 外文期刊>Journal of Zhejiang University. B >Synthesis of Schiff bases of naphtha[1,2-d]thiazol-2-amine and metal complexes of 2-(2′-hydroxy)benzylideneammonaphthothiazole as potential antimicrobial agents
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Synthesis of Schiff bases of naphtha[1,2-d]thiazol-2-amine and metal complexes of 2-(2′-hydroxy)benzylideneammonaphthothiazole as potential antimicrobial agents

机译:石脑油[1,2-d]噻唑-2-胺的席夫碱和作为潜在抗菌剂的2-(2'-羟基)苄基亚硝酰萘并噻唑的金属配合物的合成

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Objective: A series of 2-benzylideneaminonaphthothiazoles were designed and synthesized incorporating the lipo-philic naphthalene ring to render them more capable of penetrating various biomembranes. Methods: Schiff bases were synthesized by the reaction of naphtha[1,2-d]thiazol-2-amine with various substituted aromatic aldehydes. 2-(2'-Hydroxy)ben-zylideneaminonaphthothiazole was converted to its Co(Ⅱ), Ni(Ⅱ) and Cu(Ⅱ) metal complexes upon treatment with metal salts in ethanol. All the compounds were evaluated for their antibacterial activities by paper disc diffusion method with Gram positive Staphylococcus aureus and Staphylococcus epidermidis and Gram negative Escherichia coli and Pseudomonas aeruginosa bacteria. The minimum inhibitory concentrations of all the Schiff bases and metal complexes were determined by agar streak dilution method. Results: All the compounds moderately inhibited the growth of Gram positive and Gram negative bacteria. In the present study among all Schiff bases 2-(2′-hydroxy)benzylideneaminonaphthothiazole showed maximum inhibitory activity and among metal complexes Cu(Ⅱ) metal complex was found to be most potent. Conclusion: The results obtained validate the hypothesis that Schiff bases having substitution with halogens, hydroxyl group and nitro group at phenyl ring are required for the antibacterial activity while methoxy group at different positions in the aromatic ring has minimal role in the inhibitory activity. The results also indicated that the metal complexes are better antibacterial agents as compared to the Schiff bases.
机译:目的:设计并合成了一系列带有亲脂萘环的2-亚苄基氨基萘并噻唑,使其具有更强的穿透各种生物膜的能力。方法:石脑油[1,2-d]噻唑-2-胺与各种取代的芳族醛反应合成席夫碱。在乙醇中用金属盐处理后,将2-(2'-羟基)苯并亚苄基氨基萘并噻唑转化为Co(Ⅱ),Ni(Ⅱ)和Cu(Ⅱ)金属配合物。通过纸盘扩散法用革兰氏阳性金黄色葡萄球菌和表皮葡萄球菌以及革兰氏阴性大肠杆菌和铜绿假单胞菌细菌通过纸盘扩散法评估所有化合物的抗菌活性。通过琼脂条纹稀释法确定所有席夫碱和金属配合物的最低抑菌浓度。结果:所有化合物均适度抑制革兰氏阳性和阴性细菌的生长。在本研究中,在所有席夫碱中,2-(2'-羟基)亚苄基氨基萘噻唑显示出最大的抑制活性,在金属配合物中,Cu(Ⅱ)金属配合物最有效。结论:所得结果证实了以下假设:抗菌作用需要苯环上的卤素,羟基和硝基取代的席夫碱,而芳香环中不同位置的甲氧基对抑制活性的作用最小。结果还表明,与席夫碱相比,金属配合物是更好的抗菌剂。

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