首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Synthesis, characterization, DNA/BSA interactions and anticancer activity of achiral and chiral copper complexes
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Synthesis, characterization, DNA/BSA interactions and anticancer activity of achiral and chiral copper complexes

机译:非手性和手性铜配合物的合成,表征,DNA / BSA相互作用和抗癌活性

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Six novel copper(II) complexes of [(CuLCl)-Cl-1]ClO4 (1), [CuL1(acac)]PF6 (2), [(CuLCl)-Cl-2(R)](2)(PF6)(2) (3), [(CuLCl)-Cl-2(S)](2)(PF6)(2) (4), [CuL2(R)(acac)]PF6 (5) and [CuL2(S)(acac)]PF6 (6), (L-1 = 1-naphthyl-N, N-[bis(2-pyridyl)methyl]amine, L-2 = R/S-1-naphthyl-N, N-[bis(2-pyridyl) methyl] ethanamine, acac = diacetone) were synthesized to serve as artificial nucleases. All complexes were structurally characterized using X-ray crystallography. The crystal structures showed the presence of distorted square-planar CuLCl (1, 3 and 4) and distorted tetragonal-pyramidal CuL(acac) (2, 5 and 6) geometry. The interaction of these complexes with calf thymus DNA (CT-DNA) was researched by means of several spectroscopy methods, which indicated that the complexes were bound to CT-DNA by an intercalation binding mode. DNA cleavage experiments revealed that the complexes exhibited remarkable DNA cleavage activities in the presence of H2O2, and single oxygen (O-1(2)) or hydroxyl radicals may serve as the major cleavage active species. In particular, the in vitro cytotoxicity of the complexes on four human cancer cell lines (HeLa, MCF-7, Bel-7404 and HepG-2) demonstrated that the six compounds had broad-spectrum anti-cancer activity with low IC50 values. The stronger cytotoxicity and DNA cleavage activity of the chiral enantiomers compared with chiral analogues verified the influence of chirality on the antitumor activity of complexes. Meanwhile, the protein binding ability was revealed by quenching of tryptophan emission with the addition of complexes using BSA as a model protein. The results indicated that the quenching mechanism of BSA by the complexes was a static process.
机译:[(CuLCl)-Cl-1] ClO4(1),[CuL1(acac)] PF6(2),[(CuLCl)-Cl-2(R)](2)(PF6)的六种新型铜(II)配合物)(2)(3),[(CuLCl)-Cl-2(S)](2)(PF6)(2)(4),[CuL2(R)(acac)] PF6(5)和[CuL2( S)(acac)] PF6(6),(L-1 = 1-萘基-N,N- [双(2-吡啶基)甲基]胺,L-2 = R / S-1-萘基-N,N合成了[[双(2-吡啶基)甲基]乙胺,acac =双丙酮)作为人工核酸酶。使用X射线晶体学对所有复合物进行结构表征。晶体结构显示存在扭曲的方平面CuLCl(1、3和4)和扭曲的四角锥CuL(acac)(2、5和6)几何形状。通过多种光谱学方法研究了这些复合物与小牛胸腺DNA(CT-DNA)的相互作用,这表明该复合物通过插入结合模式与CT-DNA结合。 DNA裂解实验表明,复合物在H2O2存在下显示出显着的DNA裂解活性,并且单个氧(O-1(2))或羟基自由基可能是主要的裂解活性物种。特别是,该复合物对四种人类癌细胞系(HeLa,MCF-7,Bel-7404和HepG-2)的体外细胞毒性表明,这六种化合物具有广谱抗癌活性,且IC50值低。与手性类似物相比,手性对映异构体具有更强的细胞毒性和DNA裂解活性,证明了手性对复合物抗肿瘤活性的影响。同时,通过使用BSA作为模型蛋白添加复合物,通过色氨酸发射的猝灭来揭示蛋白结合能力。结果表明,配合物对BSA的猝灭机理是静态的。

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