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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Synthesis, structural elucidation and DNA binding study of fluorine substituted organotin(IV) dithiocarbamates
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Synthesis, structural elucidation and DNA binding study of fluorine substituted organotin(IV) dithiocarbamates

机译:氟取代的有机锡(IV)二硫代氨基甲酸酯的合成,结构解析和DNA结合研究

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摘要

A series of new tri- and diorganotin(IV) derivatives of an S-donor ligand with the formulae Me3SnL (1), n-Bu3SnL (2), Ph3SnL (3), Me2SnClL (4), Bu2SnClL (5), Ph2SnClL (6) and Me2SnL2 (7) were prepared by the reaction of organotin(IV) chlorides with the ligand L = 4-[bis(4-flourophenyl)methyl]piperazinium 4-[bis(4-flourophenyl)methyl]piperazine-1-carbodithioate, refluxing for 6-7 h, using dry toluene as a solvent. The synthesized compounds were characterized by elemental analysis (CHN), FT-IR, multinuclear NMR (H-1 and C-13) and single crystal X-ray crystallography. The NMR study reveals a four coordinated geometry in the solution state for complexes 1-7. It was also concluded from the crystallographic data that the synthesized complexes exhibit four coordinated monodentate structures in the solid state. A DNA binding study was performed by UV-Visible spectroscopy, viscometric measurements and cyclic voltammetry. These techniques showed an intercalative mode of interaction for the compounds with SS-DNA. A new and efficient strategy to identify pharmacophores and anti-pharmacophores sites in dithiocarbamates derivatives for antibacterial/antifungal activity using Petra, Osiris and Molinspiration (POM) analyses was also carried out. The synthesized complexes have negative values of miLogP which indicate their ability to penetrate through bio-membranes. Parameters like miLogP and TPSA for the studied complexes fall in a range that is to be expected for compounds predicting oral absorption of a drug, which means they have good bioavailability. Based on the four precise criteria (GPCR ligand, ion channel modulator, Kinase inhibitor and nuclear receptor ligand) the synthesized compounds are expected to have drug properties. (C) 2015 Elsevier Ltd. All rights reserved.
机译:S-供体配体的一系列新的三和二有机锡(IV)衍生物,其分子式为Me3SnL(1),n-Bu3SnL(2),Ph3SnL(3),Me2SnClL(4),Bu2SnClL(5),Ph2SnClL( 6)和Me2SnL2(7)是通过有机锡氯化物与配体L = 4- [双(4-氟苯基)甲基]哌嗪-4- [双(4-氟苯基)甲基]哌嗪-1-反应制得的碳二硫代盐,使用干燥的甲苯作为溶剂回流6-7小时。合成的化合物通过元素分析(CHN),FT-IR,多核NMR(H-1和C-13)和单晶X射线晶体学进行表征。 NMR研究揭示了络合物1-7在溶液状态下的四个配位几何。从晶体学数据还可以得出结论,合成的复合物在固态下表现出四个配位的单齿结构。通过紫外可见光谱,粘度测量和循环伏安法进行DNA结合研究。这些技术显示了化合物与SS-DNA相互作用的插入模式。还进行了一种新的有效策略,即使用Petra,Osiris和Molinspiration(POM)分析来鉴定二硫代氨基甲酸酯衍生物中的药效基团和抗药效基团的抗菌/抗真菌活性。合成的复合物的miLogP值为负值,表明它们穿透生物膜的能力。用于研究的复合物的miLogP和TPSA之类的参数在预测药物口服吸收的化合物预期的范围内,这意味着它们具有良好的生物利用度。基于四个精确的标准(GPCR配体,离子通道调节剂,激酶抑制剂和核受体配体),预期合成的化合物具有药物特性。 (C)2015 Elsevier Ltd.保留所有权利。

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