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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Synthesis, characterization, DNA binding and in vitro antimicrobial studies of a novel tetra-substituted N-isopropyl-N-(4-ferrocenylphenyl)-N '-(2,6-diethylphenyl)-N'-benzoylguanidine: Crystallographic structure and quantum chemical computations
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Synthesis, characterization, DNA binding and in vitro antimicrobial studies of a novel tetra-substituted N-isopropyl-N-(4-ferrocenylphenyl)-N '-(2,6-diethylphenyl)-N'-benzoylguanidine: Crystallographic structure and quantum chemical computations

机译:新型四取代的N-异丙基-N-(4-二茂铁基苯基)-N'-(2,6-二乙基苯基)-N“-苯甲酰胍的合成,表征,DNA结合和体外抗菌研究:晶体结构和量子化学计算

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摘要

A novel tetra-substituted guanidine, N-isopropyl-N-(4-ferrocenylphenyl)-N'-(2,6-diethylphenyl)-N"-benzoylguanidine (1), [(CH3)(2)CH)(C5H5FeC5H4C6H4)NC(NHCOC6H5)(NHC6H3(CH2CH3)(2)] has been synthesized and characterized by elemental analysis, FT-IR, multinuclear (H-1, C-13) NMR spectroscopy, single crystal X-rays diffraction analysis and density functional theory based quantum chemical calculations. The torsion angles indicating that the guanidine moiety and carbonyl group are almost co-planar, due to the pseudo hexagonal ring formed by intramolecular N-H center dot center dot center dot O hydrogen bonds. The DNA interaction studies performed by cyclic voltammetry and UV-visible spectroscopy are in close agreement with the binding constants (K) 1.4 x 10(4) and 1.2 x 10(4) respectively. The shift in peak potential, current and absorption maxima of the studied ferrocenyl guanidine in the presence of DNA discovered that CV coupled with UV-vis spectroscopy could provide an opportunity to elaborate DNA interaction mechanism, a prerequisite for the design of new drug like agents and understanding the molecular basis of their action. The synthesized compound (1) has also been screened for their antibacterial and antifungal. (C) 2014 Elsevier B.V. All rights reserved.
机译:新型四取代胍N-异丙基-N-(4-二茂铁基苯基)-N'-(2,6-二乙基苯基)-N“-苯甲酰胍(1),[(CH3)(2)CH)(C5H5FeC5H4C6H4)已合成NC(NHCOC6H5)(NHC6H3(CH2CH3)(2)],并通过元素分析,FT-IR,多核(H-1,C-13)NMR光谱,单晶X射线衍射分析和密度泛函理论进行了表征基于分子化学NH中心点中心点中心点O氢键形成的假六边形环,扭转角表明胍基部分和羰基几乎共面,通过循环伏安法进行DNA相互作用研究紫外光谱和紫外可见光谱分别与结合常数(K)1.4 x 10(4)和1.2 x 10(4)一致,在存在下,二茂铁基胍的峰值电势,电流和吸收最大值发生了变化。 DNA发现CV结合UV-vis光谱学可以为硼酸脱氧核糖核酸相互作用机制,这是设计新药样药物并了解其作用的分子基础的前提。还对合成的化合物(1)进行了抗菌和抗真菌筛选。 (C)2014 Elsevier B.V.保留所有权利。

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