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Antibacterial Activity of 2-Picolyl-polypyridyl-Based Ruthenium (II/III) Complexes on Non-Drug-Resistant and Drug-Resistant Bacteria

机译:2-吡啶基聚吡啶基钌(II / III)复合物对非耐药性和耐药细菌的抗菌活性

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A new hexadentate 2-picolyl-polypyridyl-based ligand (4, 4'-(butane-1, 4-diylbis(oxy))bis(N, N-bis(pyridin-2-ylmethyl)aniline)) (2BUT) (1) and its corresponding Ru(II/III) complexes were synthesized and characterized, followed by assessment of their possible bioactive properties towards drug-resistant and non-drug-resistant bacteria. Spectroscopic characterization of the ligand was done using proton NMR, FTIR, and ESI-MS, which showed that the ligand was successfully synthesized. The Ru(II/III) complexes were characterized by FTIR, UV/Vis, elemental analysis, proton NMR, ESI-MS, and magnetic susceptibility studies. The analysis of ESI-MS data of the complexes showed that they were successfully synthesized. Empirical formulae derived from elemental analysis of the complexes also indicated successful synthesis and relative purity of the complexes. The important functional groups of the ligands could be observed after complexation using FTIR. Magnetic susceptibility data and electronic spectra indicated that both complexes adopt a low spin configuration. The disc diffusion assay was used to test the compounds for antibiotic activity on two bacteria species and their drug-resistant counterparts. The compounds displayed antibiotic activity towards the two non-drug-resistant bacteria . As for the drug-resistant organisms, only [Ru 2 (2BUT)(DMF) 2 (DPA) 2 ](BH 4 ) 4 3 and 2, 2-dipyridylamine inhibited the growth of MRSA. Gel electrophoresis DNA cleavage studies showed that the ligands had no DNA cleaving properties while all the complexes denatured the bacterial DNA. Therefore, the complexes may have DNA nuclease activity towards the bacterial genomic material.
机译:一种新的六次六型吡啶基聚吡啶基配体(4,4' - (丁烷-1,4-二基)双(N,N-BIS(吡啶-2-基甲基)苯胺)(2)( 1)合成并表征其相应的Ru(II / III)配合物,然后评估其可能的生物活性性能抗耐药性和非耐药细菌。使用质子NMR,FTIR和ESI-MS对配体进行光谱表征,这表明配体成功合成。 Ru(II / III)复合物的特征在于FTIR,UV / Vis,元素分析,质子NMR,ESI-MS和磁性敏感性研究。分析复合物的ESI-MS数据显示它们已成功合成。源自复合物的元素分析的经验配方也表明了复合物的成功合成和相对纯度。使用FTIR梳理后,可以观察到配体的重要官能团。磁化率数据和电子光谱表明,两个配合物采用低自旋配置。盘扩散测定用于测试两种细菌种类上的抗生素活性的化合物及其耐药性对应物。该化合物显示出两种非耐药细菌的抗生素活性。对于耐药生物,仅[Ru 2(2But)(DMF)2(DPA)2](BH 4)4 3和2,2-二吡啶胺抑制MRSA的生长。凝胶电泳DNA切割研究表明,配体没有DNA切割特性,同时所有复合物都变性细菌DNA。因此,复合物可以具有朝向细菌基因组材料的DNA核酸酶活性。

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