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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Synthetic investigation, physicochemical characterization and antibacterial evaluation of ternary Bi(III) systems with hydroxycarboxylic acid and aromatic chelator substrates
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Synthetic investigation, physicochemical characterization and antibacterial evaluation of ternary Bi(III) systems with hydroxycarboxylic acid and aromatic chelator substrates

机译:用羟基羧酸和芳香螯合剂基材的三元铋(III)体系的合成研究,物理化学表征及抗菌评价

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Abstract Due to its physical and chemical properties, bismuth (Bi(III)) is widely used in the treatment of several gastrointestinal and skin diseases, and infections caused by bacteria. Herein, its known antimicrobial potential was taken into consideration in the synthesis of two new hybrid ternary materials of Bi(III) with the physiological α-hydroxycarboxylic glycolic acid and 1,10-phenanthroline (phen), [Bi2(C2H2O3)2(C2H3O3)(NO3)]n . nH2O (1) and [Bi(C12H8N2)(NO3)4](C10H8N4) (2), aiming at improving its antibacterial properties. Their physicochemical characterization was carried out through elemental analysis, FT-IR, atomic absorption spectroscopy, single crystal X-ray diffraction, thermogravimetric analysis (TGA), photoluminescence, and 13C MAS-NMR techniques. The antimicrobial activity of the title complexes was directly linked to Bi(III) coordination environment and the incipient aqueous chemistry. For their antibacterial assessment, minimum inhibitory concentration (MIC), zone of inhibition (ZOI), and bacteriostatic-bacteriocidal activity were determined in various Gram positive (Staphylococcus aureus, Bacillus subtilis and Bacillus cereus) and Gram negative (Escherichia coli and Xanthomonas campestris) bacterial cultures, in reference to a positive control (ampicillin), encompassing further comparisons with literature data. The findings reveal that the new hybrid bismuth materials have significant antimicrobial effects against the employed bacteria. Specifically, 2 exhibits better antimicrobial properties than free Bi(NO3)3 and phen. On the other hand, 1 is bacteriostatic toward four microorganisms except X. campestris, with 2 being bacteriocidal toward four microorganisms except B. cereus. Collectively, the new hybrid, well-defined, and two of the rarely crystallographically characterized Bi(III) materials a) exhibit properties reflecting their physicochemical nature and reactivity, and b) are expected to contribute to the development of efficient metallodrugs against drug-resistant bacterial infections. Graphical abstract In an effort to confront the rising multi-resistance in infectious pathogens, novel hybrid Bi(III)-hydroxycarboxylato-(NO3 ?/phenanthroline) complexes were designed and synthesized. Their antimicrobial properties were dem
机译:<![cdata [ 抽象 由于其物理和化学性质,铋(BI(III))广泛用于治疗几个胃肠和皮肤病和细菌引起的感染。在此,考虑其已知的抗微生物潜力在合成两种BI(III)的BI(III)的合成中,用生理学α - 羟基羧基乙醇酸和1,10菲咯啉( phen),[bi 2 (c 2 h 2 O 3 2 (C 2 H 3 O 3 )(否 3 )] n nh 2 o (1)和[bi(c 12 H 8 N 2 )(没有 3> 3 4 ](C 10 < / CE:INF> H 8 N 4 (2) ,旨在改善其抗菌性质。它们的物理化学表征通过元素分析,FT-IR,原子吸收光谱,单晶X射线衍射,热重分析(TGA),光致发光和 13 C MAS-NMR技术。标题复合物的抗微生物活性与Bi(III)配位环境和初期的含水化学直接相关。对于它们的抗菌评估,在各种克阳性(金黄色葡萄球菌,抑制抑制区(麦克风)和抑制区域和抑制菌杀菌剂活性和抑菌菌癌和β/ ce:斜体>枯草芽孢杆菌芽孢杆菌)和克否阴性( escherichia coli 斜体> xanthomonas campestris)< / Ce:斜体>细菌培养物,参考阳性对照(氨苄青霉素),包括与文献数据的进​​一步比较。调查结果表明,新的杂交铋材料对所用细菌具有显着的抗微生物作用。具体而言, 2 表现出比afffic bi更好的抗微生物特性(no 3 3 和phen。另一方面, 1 除了 x之外,均为四种微生物的抑菌。 Campestris ,具有 2 b之外的四个微生物的细菌灭菌剂。 Cereus 。集体,新的杂交,定义和近似的晶体特征的BI(III)材料A)表现出反映其物理化学性质和反应性的性质,B)预期有助于抗耐药性的有效金属糊化药的发展细菌感染。 图形摘要 努力面对传染病的多重耐药性,新型杂交Bi(III) - 羟基羧酸盐(NO 3 设计和合成了复合物的组合物。他们的抗菌性质是DEM

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