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首页> 外文期刊>New Journal of Chemistry >Iron(III) and nickel(II) complexes as potential anticancer agents: synthesis, physicochemical and structural properties, cytotoxic activity and DNA interactions
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Iron(III) and nickel(II) complexes as potential anticancer agents: synthesis, physicochemical and structural properties, cytotoxic activity and DNA interactions

机译:铁(III)和镍(II)配合物作为潜在的抗癌剂:合成,理化和结构性质,细胞毒活性和DNA相互作用

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摘要

Template reactions of 2-hydroxy-R-benzaldehyde-S-methylisothiosemicarbazones (R = 3-methoxy or 4-hydroxy) with the corresponding aldehydes in the presence of FeCl3 and NiCl2 yielded N-1, N-4-disalicylidene chelate complexes. The compounds were characterized by means of elemental and spectroscopic methods. The structure of complex 1 was determined by X-ray single crystal diffraction. Crystal data (Mo K alpha; 296 K) are as follows: monoclinic space group P2(1)/c, a = 12.9857(8) angstrom, b = 7.8019(4) angstrom, c = 19.1976(12) angstrom, beta = 101.655(5) 1, Z = 4. Cytotoxic effects of the compounds were evaluated by the MTT assay in K562 leukemia, ECV304 endothelial and normal mononuclear cells, and DNA fragmentation analysis using the diphenylamine reaction was performed. The DNA binding capacity of thiosemicarbazones at IC50 and different concentrations was investigated. The DNA fragmentation percentage of compound treated cells was higher than that of non-treated control cells but was higher for compound 3 (84%) compared to the others. The interaction of compounds 1-4 and DNA was investigated voltammetrically by using nucleic acid modified electrodes after the double stranded fish sperm DNA (fsDNA), or poly(dA)center dot poly(dT), was immobilized onto the surface of pencil graphite electrodes (PGEs). Accordingly, the oxidation signals of DNA bases, guanine and adenine, were measured by using differential pulse voltammetry (DPV). The changes in the signals of guanine and adenine were evaluated before and after the interaction process. The results indicated that compound 3 was cytotoxic at very low concentrations in K562 leukemia cells unlike other cells and that could damage the DNA double stranded form, specifically the adenine base. Therefore, it may have a selective antileukemic effect and drug potential.
机译:在FeCl3和NiCl2存在下,2-羟基-R-苯甲醛-S-甲基异硫代半氨基甲酮(R = 3-甲氧基或4-羟基)与相应的醛的模板反应产生了N-1,N-4-二水杨基螯合物。通过元素和光谱方法对化合物进行表征。配合物1的结构通过X射线单晶衍射确定。晶体数据(Mo K alpha; 296 K)如下:单斜空间群P2(1)/ c,a = 12.9857(8)埃,b = 7.8019(4)埃,c = 19.1976(12)埃,beta = 101.655(5)1,Z =4。通过MTT分析在K562白血病,ECV304内皮细胞和正常单核细胞中评估了化合物的细胞毒性作用,并使用二苯胺反应进行了DNA片段分析。研究了硫半脲在IC50和不同浓度下的DNA结合能力。化合物处理的细胞的DNA断裂百分比高于未处理的对照细胞,但化合物3的DNA断裂百分比更高(84%)。在将双链鱼精DNA(fsDNA)或poly(dA)中心点poly(dT)固定在铅笔状石墨电极表面后,使用核酸修饰电极伏安法研究化合物1-4与DNA的相互作用(PGE)。因此,通过使用差分脉冲伏安法(DPV)测量DNA碱基,鸟嘌呤和腺嘌呤的氧化信号。在相互作用过程之前和之后,评估鸟嘌呤和腺嘌呤信号的变化。结果表明,化合物3在K562白血病细胞中以非常低的浓度具有细胞毒性,这与其他细胞不同,并且可以破坏DNA双链形式,特别是腺嘌呤碱基。因此,它可能具有选择性的抗白血病作用和药物潜力。

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