首页> 外文期刊>Journal of the Brazilian Chemical Society >Metal Complex Derivatives of Azole: a Study on Their Synthesis, Characterization, and Antibacterial and Antifungal Activities
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Metal Complex Derivatives of Azole: a Study on Their Synthesis, Characterization, and Antibacterial and Antifungal Activities

机译:唑的金属配合物衍生物:它们的合成,表征以及抗菌和抗真菌活性的研究

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>Four new zinc complex derivatives of azoles and ligands were synthesized and isolated as white air-stable solids and characterized by elemental analyses, thermogravimetric analysis (TGA), infrared spectroscopy, nuclear magnetic resonance (NMR) and mass spectra. The elemental analysis, theoretical calculations and NMR show that the complexes likely have a 1:1 (M:L) stoichiometry and tetrahedral geometry. To evaluate the biological activity of the complexes and to discuss the role of metal ions and structural properties, the ligands and their metal complexes have been studied. Their antimicrobial activity was determined in vitro by agar-well diffusion and broth microdilution against nine bacterial strains and seven fungal strains with clinical relevance. In vitro assays showed that the complexes exhibited moderate antibacterial and/or antifungal activities. The antimicrobial activity was found to be more active for the metal complexes than the ligands. The metal complexes that contained copper and cobalt, respectively, displayed notable antibacterial and antifungal effects against all the tested bacterial strains. The minimum inhibitory concentration 50 (MIC50) values were in the range 2454-0.7 ?μg mL-1. Metal complexes were more effective at inhibiting bacteria than fungi. The results could provide a high-potential solution for antimicrobial growth resistance, for both bacteria and fungi.
机译:合成并分离出四种新的唑类和配体锌络合物衍生物,为白色空气稳定固体,并通过元素分析,热重分析(TGA),红外光谱,核磁共振(NMR)和质谱进行表征。元素分析,理论计算和NMR表明,该络合物可能具有1:1(M:L)的化学计量比和四面体几何形状。为了评估络合物的生物活性并讨论金属离子的作用和结构性质,已经研究了配体及其金属络合物。通过体外琼脂孔扩散和肉汤微稀释法测定其对九种细菌菌株和七种真菌菌株的抗菌活性,并确定其临床相关性。体外测定表明该复合物表现出中等的抗菌和/或抗真菌活性。发现金属配合物的抗微生物活性比配体更强。分别包含铜和钴的金属络合物对所有测试的细菌菌株均表现出显着的抗菌和抗真菌作用。最小抑菌浓度50(MIC50)值在2454-0.7μgmL-1范围内。金属复合物比真菌更有效地抑制细菌。该结果可为细菌和真菌的抗微生物生长抗性提供高潜力的解决方案。

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