Ab'/> Synthesis, structural studies and biological activity of novel Cu(II) complexes with thiourea derivatives of 4-azatricyclo[5.2.1.0 <ce:sup loc='post'>2,6</ce:sup>]dec-8-ene-3,5-dione
首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Synthesis, structural studies and biological activity of novel Cu(II) complexes with thiourea derivatives of 4-azatricyclo[5.2.1.0 2,6]dec-8-ene-3,5-dione
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Synthesis, structural studies and biological activity of novel Cu(II) complexes with thiourea derivatives of 4-azatricyclo[5.2.1.0 2,6]dec-8-ene-3,5-dione

机译:新型Cu(II)复合物的合成,结构研究和生物活性与4-氮杂萘硫脲衍生物[5.2.1.0 2,6 ] Dec-8-Ene -3,5-二酮

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AbstractThe new Cu(II) complexes of 1/2/3-(bromophenyl)-3-(1,7,8,9-tetramethyl-3,5-dioxo-4-azatricyclo[5.2.1.02,6]dec-8-en-4-yl)thiourea derivatives have been synthesized. The spectroscopic studies together with density functional theory calculations of Cu(II) complexes revealed that two parent ligands coordinate to the copper cation in bidentate fashion via thiocarbonyl S and deprotonated N atoms forming rarely observed four-membered chelate ring, with nearly planar [CuN2S2] moiety. In solid state, the mononuclear complex is formed for thiourea derivative with 3-bromophenyl, whereas for Cu(II) connection with 2- and 4-bromophenyl-thioureas the formation of dinuclear complexes is observed, the latter formed by the stacking of mononuclear complexes.The microbiological activity of novel compounds has been evaluated. The Cu(II) complex with 4-bromophenyl ring connected to the thiourea moiety showed significant inhibition against standard strains ofS. aureusandS. epidermidis. The range of minimal inhibitory concentration values is 2–4μg/mL. That compound exhibited antibiofilm potency and effectively inhibited the formation of biofilm of methicillin-susceptive strain ofS. epidermidisATCC 12228. Moreover, the cytotoxicity against the MT-4 cells of all obtained complexes has been evaluated. The complexes turned out to be non-cytotoxic for exponentially growing MT-4.
机译:<![cdata [ 抽象 2,6 ] Dec-8-en-4-yl )硫脲衍生物已经合成。 Cu(ii)复合物的密度官能理论计算的光谱研究表明,两个亲本配体通过硫代羰基S和质子化N原子与双硫酸酯时尚的铜阳离子相同,其形成很少观察到四元螯合环,具有几乎平面[cun 2 S 2 ]部分。在固态中,单核络合物形成有用3-溴苯基的硫脲衍生物,而对于Cu(II)与2-溴苯基 - 硫脲的连接,观察到核核复合物的形成,后者通过堆叠单核复合物形成了后者。 已经评估了新化合物的微生物活性。与硫脲部分连接的4-溴苯环的Cu(II)复合物显着抑制 s的标准菌株。金黄色葡萄球菌 s。 Epidermidis 。最小抑制浓度值的范围是2-4μg/ ml。该化合物表现出抗生素效力,有效地抑制了 s的甲氧西林遗传株生物膜的形成。 Epidermidis ATCC 12228.此外,已经评估了所有得到的复合物的MT-4细胞的细胞毒性。综合复合物原因是非细胞毒性,用于指数增长MT-4。

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