首页> 外文期刊>Inorganica Chimica Acta >A detailed study on the interaction of a novel water-soluble glycine bridged zinc(II) Schiff base coordination polymer with BSA: Synthesis, crystal structure, molecular docking and cytotoxicity effect against A549, Jurkat and Raji cell lines
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A detailed study on the interaction of a novel water-soluble glycine bridged zinc(II) Schiff base coordination polymer with BSA: Synthesis, crystal structure, molecular docking and cytotoxicity effect against A549, Jurkat and Raji cell lines

机译:新型水溶性甘氨酸桥锌(II)席夫碱配位聚合物与BSA的相互作用的详细研究:合成,晶体结构,分子对接和对A549,Jurkat和Raji细胞系的细胞毒性作用

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A novel water-soluble glycine bridged zinc(II) Schiff base coordination polymer was synthesized by the condensation of 2,6-diformyl-4-methylphenol, glycine, and zinc(II) chloride. The complex was characterized by (HNMR)-H-1, FT-IR, elemental analyses and X-ray crystallography. The polymeric complex was built up of two glycine-bridged Zn/L moieties, where L denotes the Schiff base containing 2,6-diformyl-4-methylphenol and glycine in 1:1 M ratio. The carboxylic group of L was coordinated to the Zn atoms of the neighboring moieties; thus each Zn center was five-coordinated. The interaction between polymeric Zn(II) complex and bovine serum albumin (BSA) was studied by UV Vis, fluorescence, and synchronous fluorescence spectroscopic techniques. By considering the sign and values of the thermodynamic parameters (Delta H and Delta S), it is clear that the binding between BSA and complex was exothermic and entropy driven and electrostatic interactions between the complex and BSA was supposed. Site-selective binding studies revealed that the complex were mainly located in the region of site II (subdomain IIIA) in BSA. From the synchronous, fluorescence spectroscopic studies, it is concluded that complex could bind to tyrosine and tryptophan residues simultaneously. The K-b values indicated a high binding affinity of the complex to BSA. In vitro anticancer activity of the polymeric Zn(II) complex was evaluated against A549, Jurkat, and Raji cell lines by KTT assay. The complex was remarkably active against the cell lines and can be a good candidate for an anticancer therapy. Theoretical docking studies were performed to further investigate the BSA binding interactions. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过2,6-二甲基-4-甲基苯酚,甘氨酸和锌(II)氯化锌,合成了一种新型水溶性甘氨酸桥接锌(II)Schiff碱配位聚合物。该复合物的特征在于(HNMR)-H-1,FT-IR,元素分析和X射线晶体学。聚合物复合物由两种甘氨酸桥型Zn / L部分构建,其中L表示含有2,6-二甲基-4-甲基苯酚和甘氨酸的Schiff碱,1:1M的比例。 L的羧基组与邻近部分的Zn原子配位;因此,每个Zn中心都是五个协调的。通过UV Vis,荧光和同步荧光光谱技术研究了聚合物Zn(II)复合物和牛血清白蛋白(BSA)之间的相互作用。通过考虑热力学参数的标志和值(Delta H和Delta S),显然BSA和复合物之间的结合是放热和复合物和BSA之间的熵驱动和静电相互作用。遗体选择性结合研究表明,该复合物主要位于BSA中位点II(亚域IIIA)的区域。从同步,荧光光谱研究中,得出结论,复合物可以同时与酪氨酸和色氨酸残留物结合。 K-B值表明复合物与BSA的高结合亲和力。通过KTT测定评估聚合物Zn(II)复合物的体外抗癌活性,评价A549,Jurkat和Raji细胞系。复合物对细胞系非常活跃,并且可以是抗癌治疗的好候选者。进行理论对接研究以进一步研究BSA结合相互作用。 (c)2017年Elsevier B.V.保留所有权利。

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