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水溶性镍(II)希夫碱配合物的合成、结构表征、DNA 结合亲和力、DNA 切割、细胞毒性及计算研究。

Water-soluble nickel (II) Schiff base complexes: Synthesis, structural characterization, DNA binding affinity, DNA cleavage, cytotoxicity, and computational studies.

机构信息

Department of Chemistry, School of Sciences, Shiraz University, Shiraz, Iran.

Diagnostic Laboratory Sciences and Technology Research Center, School of Paramedical Sciences, Shiraz University of Medical Science, Shiraz, Iran.

出版信息

Nucleosides Nucleotides Nucleic Acids. 2023;42(3):234-261. doi: 10.1080/15257770.2022.2121838. Epub 2022 Sep 15.

Abstract

Two water-soluble nickel (II) Schiff base complexes were prepared and their interaction with fish sperm DNA (FS-DNA) was investigated by various methods including UV-vis spectroscopy, fluorescence spectroscopy, cyclic voltammetry, and viscometric measurements. Complex 1: [N,N'-bis{5-[(triphenyl phosphonium chloride)-methyl] salicylidine}-3,4-diaminobenzophenone]nickel(II) perchloride dihydrate: [Ni(5-CHPPh-3,4-salophen)] (ClO).2 HO was synthesized as a new complex and characterized by elemental analysis, IR, H NMR, thermal gravimetric analysis (TGA) and UV-vis spectroscopy. Complex 2: sodium [(N,N'-bis(5-sulfosalicyliden)-3, 4-diaminobenzophenone)aqua] nickel(II) hydrate: Na[Ni (5-SO-3,4-salbenz)(HO)]. HO was already synthesized by our research team, but in this study, its function as a DNA-binding compound was tested, and compared with the results of complex 1-DNA binding. The calculation of different constants using absorption and emission data, all confirmed the stronger binding ability of complex 1 than complex 2 with DNA. Different thermodynamic parameters showed the interactions between DNA and complexes were the type of hydrophobic interaction for complex 1 and electrostatic interaction for complex 2. Also, the negative values of free energy changes proved a spontaneous DNA binding process. Based on cell toxicity assay against two different cell lines including Jurkat and MCF-7, the effect of complex 1 was comparable to , and the toxicity mechanism was further justified by bright field microscopy, flow cytometry, and cleavage of DNA in the presence of HO. Besides, the docking calculations suggested intercalation after measuring the lowest-energy between the complexes and DNA. For both complexes, all analytical, spectroscopic, and molecular modeling methods supported partial intercalation as the main binding mode between the complexes and DNA.

摘要

两种水溶性镍(II)席夫碱配合物被制备,并通过各种方法研究其与鱼精 DNA(FS-DNA)的相互作用,包括紫外可见光谱、荧光光谱、循环伏安法和粘度测量。配合物 1:[N,N'-双{5-[(三苯基氯化膦)甲基]水杨醛基}-3,4-二氨基二苯甲酮]镍(II)高氯酸盐二水合物:[Ni(5-CHPPh-3,4-salophen)](ClO)2·2HO 作为一种新的配合物被合成,并通过元素分析、IR、1H NMR、热重分析(TGA)和紫外可见光谱进行表征。配合物 2:[N,N'-双(5-磺水杨醛基)-3,4-二氨基二苯甲酮]镍(II)水合钠盐:Na[Ni(5-SO-3,4-salbenz)(HO)]·HO 已经由我们的研究团队合成,但在本研究中,测试了其作为 DNA 结合化合物的功能,并与配合物 1-DNA 结合的结果进行了比较。使用吸收和发射数据计算不同常数,均证实了配合物 1 与 DNA 的结合能力强于配合物 2。不同的热力学参数表明,DNA 与配合物的相互作用对于配合物 1 是疏水相互作用,对于配合物 2 是静电相互作用。此外,自由能变化的负值证明了 DNA 结合过程是自发的。基于对两种不同细胞系(Jurkat 和 MCF-7)的细胞毒性测定,配合物 1 的作用与[Ni(en)2](ClO4)2 相当,并且通过明场显微镜、流式细胞术和 HO 存在下 DNA 的切割进一步证明了其毒性机制。此外,对接计算表明,在测量复合物与 DNA 之间的最低能量后,发生了插入。对于这两种配合物,所有分析、光谱和分子建模方法都支持部分插入作为配合物与 DNA 之间的主要结合模式。

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