首页> 外文期刊>Journal of Organometallic Chemistry >Antibacterial and molecular study of thiourea derivative ligand and its Dimethyltin(IV) complex with the superior of its Copper(II) complex as a hepatocellular antitumor drug
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Antibacterial and molecular study of thiourea derivative ligand and its Dimethyltin(IV) complex with the superior of its Copper(II) complex as a hepatocellular antitumor drug

机译:硫脲衍生物配体及其二甲基锡(IV)复合物的抗菌和分子研究与其铜(II)复合物作为肝细抗肿瘤药物

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1-benzoyl(1,2,4-triazol-3-yl)thiourea [BTThU] ligand and its [dimethyltin(IV), Pd(II) and Cu(II)] complexes are synthesized. The complexes are formed in molar ratio Cu(BTThU)(2), DMT(BTThU)(2) and Pd(BTThU)(2). The characterization has been done by using different physicochemical methods as elemental analyses, IR, H-1 NMR DMSO-d(6) and molar conductance measurements. The stability constants of the formed species that produced from the interaction of [BTThU] with dimethyltin(IV) [DMT], dibutyltin(IV) [DBT] and diphenyltin(IV) [DPT] were determined potentiometrically using the non-linear least-square program MINIQUAD-75 in 50% ethanol-water mixture and 0.1 M ionic strength at 25 degrees C. Concentration distribution diagrams for these system were evaluated. The theoretical conformational structure analyses were performed using density functional theory for thiol and thione tautomeric forms of [BTThU] ligand and its complex at B3LYP functional with 6-311G basis set for ligand and LANL2DZ basis set for complex. The theoretical vibrational frequency values of the optimized structures were calculated. The charge distribution within the ligand and its dimethyltin(IV) complex was calculated using Mulliken population analysis of [MPA] and natural population analysis [NPA]. The biological activity of BTThU ligand and its dimethyltin(IV) complex were tested in vitro against some selected species of fungi and bacteria. The hepatocellular antitumor effect of all compounds was investigated. (C) 2020 Published by Elsevier B.V.
机译:合成1-苯甲酰基(1,2,4-三唑-3-基)硫脲[BTTHU]配体及其[二甲基锡(IV),Pd(II)和Cu(II)]配合物。复合物形成为摩尔比Cu(BTTHU)(2),DMT(BTTHU)(2)和Pd(BTTHU)(2)。通过使用不同的物理化学方法作为元素分析,IR,H-1 NMR DMSO-D(6)和摩尔传导测量来完成该表征。由[BTTHU]的相互作用与二甲基锡(IV)[DMT],二丁基锡(IV),二苯基锡(IV)[DPT]产生的所形成的物种的稳定性常数被用非线性最少测定 - 方喹腊径-75在50%乙醇 - 水混合物中和0.1M离子强度为25℃。评估这些系统的浓度分布图。使用密度函数理论对硫醇和尖端互变异构型形式的[BTTHU]配体的形式进行的理论构象结构分析及其在B3LYP官能团上以6-311g的基础设施为配体,用于复合物。计算了优化结构的理论振动频率值。使用Mulliken群体分析[MPa]和天然群体分析[NPA]计算配体和其二甲基锡(IV)复合物中的电荷分布。在体外测试BTTHU配体及其二甲基锡(IV)复合物的生物活性,对一些选定的真菌和细菌进行过滤。研究了所有化合物的肝细胞抗肿瘤效果。 (c)2020由elsevier b.v发布。

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