首页> 外文期刊>Bulletin of the Korean Chemical Society >Synthesis, Characterization and DNA Interaction Studies of (N,N'-Bis(5-phenylazosalicylaldehyde)-ethylenediamine)Cobalt(II) Complex
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Synthesis, Characterization and DNA Interaction Studies of (N,N'-Bis(5-phenylazosalicylaldehyde)-ethylenediamine)Cobalt(II) Complex

机译:(N,N'-双(5-苯基氮杂水杨醛)-乙二胺)钴(II)配合物的合成,表征和DNA相互作用研究

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摘要

In the present study, at first, azo Schiff base ligand of (N,N'-bis(5-phenylazosalicylaldehyde)-ethylenediamine) (H2L) has been synthesized by condensation reaction of 5-phenylazosalicylaldehyde and ethylenediamine in 2:1 molar ratio, respectively. Then, its cobalt complex (CoL) was synthesized by reaction of Co(OAc)2·4H2O with ligand (H2L) in 1:1 molar ratio in ethanol solvent. This ligand and its cobalt complex containing azo functional groups were characterized using elemental analysis, ~1H-NMR, UV-vis and IR spectroscopies. Subsequently, the interaction between native calf thymus deoxyribonucleic acid (ct-DNA) and CoL complex was investigated in 10 mM Tris/HCl buffer solution, pH = 7 using UV-vis absorption, thermal denaturation technique and viscosity measurements. From spectrophotometric titration experiments, the binding constant of CoL complex with ct-DNA was found to be (2.4 ± 0.2) × 10~4 M~(-1). The thermodynamic parameters were calculated by van't Hoff equation.The enthalpy and entropy changes were 5753.94 ± 172.66 kcal/mol and 43.93 ± 1.18 cal/mol·K at 25 °C, respectively. Thermal denaturation experiments represent the increasing of melting temperature of ct-DNA (about 0.93 °C) due to binding of CoL complex. The results indicate that the process is entropy- driven and suggest that hydrophobic interactions are the main driving force for the complex formation.
机译:在本研究中,首先,通过5-苯基氮杂水杨醛与乙二胺的摩尔比为2:1的缩合反应合成了(N,N'-双(5-苯基氮杂水杨醛)-乙二胺)(H2L)的偶氮席夫碱配体,分别。然后,通过在乙醇溶剂中以1:1的摩尔比使Co(OAc)2·4H2O与配体(H2L)反应合成钴配合物(CoL)。使用元素分析,〜1H-NMR,UV-vis和IR光谱对这种配体及其含偶氮官能团的钴配合物进行了表征。随后,使用紫外可见吸收,热变性技术和粘度测量,在pH = 7的10 mM Tris / HCl缓冲溶液中研究了天然小牛胸腺脱氧核糖核酸(ct-DNA)与CoL复合物之间的相互作用。通过分光光度滴定实验,发现CoL络合物与ct-DNA的结合常数为(2.4±0.2)×10〜4 M〜(-1)。用van't Hoff方程计算热力学参数。在25℃下,焓变和熵变分别为5753.94±172.66kcal / mol和43.93±1.18cal / mol·K。热变性实验表明由于CoL配合物的结合,ct-DNA的解链温度升高(约0.93°C)。结果表明该过程是由熵驱动的,并表明疏水相互作用是复合物形成的主要驱动力。

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