Department of Chemistry, Bharathiar University, Coimbatore, 641 046, India.
Dalton Trans. 2012 Apr 21;41(15):4423-36. doi: 10.1039/c2dt11938b. Epub 2012 Feb 17.
A new series of geometrically different complexes containing ferrocenyl hydrazone ligands were synthesised by reacting suitable precursor complex [MCl(2)(PPh(3))(2)] with the ligands HL(1) or HL(2) (where M = Cu(II) or Ni(II); HL(1) = [Cp(2)Fe(CH=N-NH-CO-C(6)H(5))] (1) and HL(2) = [Cp(2)Fe(CH=N-NH-CO-C(5)H(4)N)]) (2). The new complexes of the composition [Cu(L(1))(PPh(3))(2)], (3) [Cu(L(2))(PPh(3))(2)] (4), [Ni(L(1))(2)] (5) and [Ni(L(2))(2)] (6) were characterised by various spectral studies. Among them, complexes 3 and 5 characterised by single crystal X-ray diffraction showed a distorted tetrahedral structure for the former with 1:1 metal-ligand stoichiometry, but a distorted square planar geometry with 1:2 metal-ligand stoichiometry in the case of the latter. Systematic biological investigations like DNA binding, DNA cleavage, protein binding, free radical scavenging and cytotoxicity activities were carried out using all the synthesised compounds and the results obtained were explained on the basis of structure-activity relationships. The binding constant (K(b)) values of the synthesised compounds are found to be in the order of magnitude 10(3)-10(5) M(-1) and also they exhibit significant cleavage of supercoiled (SC) pUC19 DNA in the presence of H(2)O(2) as co-oxidant. The conformational changes of bovine serum albumin (BSA) upon binding with the above complexes were also studied. In addition, concentration dependent free radical scavenging potential of all the synthesised compounds (1-6) was also carried out under in vitro conditions. Assays on the cytotoxicity of the above complexes against HeLa and A431 tumor cells and NIH 3T3 normal cells were also carried out.
合成了一系列含有二茂铁腙配体的具有不同几何形状的新型配合物,方法是将合适的前体配合物[MCl(2)(PPh(3))(2)]与配体 HL(1)或 HL(2)反应,其中 M = Cu(II)或 Ni(II);HL(1) = [Cp(2)Fe(CH=N-NH-CO-C(6)H(5))] (1)和 HL(2) = [Cp(2)Fe(CH=N-NH-CO-C(5)H(4)N)] (2)。配合物[Cu(L(1))(PPh(3))(2)] (3)、[Cu(L(2))(PPh(3))(2)] (4)、[Ni(L(1))(2)] (5)和[Ni(L(2))(2)] (6)的组成通过各种光谱研究进行了表征。其中,通过单晶 X 射线衍射表征的配合物 3 和 5 显示出前者具有扭曲的四面体结构,金属-配体化学计量比为 1:1,而后者则具有扭曲的正方形平面几何结构,金属-配体化学计量比为 1:2。所有合成化合物都进行了系统的生物研究,如 DNA 结合、DNA 切割、蛋白质结合、自由基清除和细胞毒性活性,结果根据结构-活性关系进行了解释。所合成化合物的结合常数 (K(b)) 值发现处于 10(3)-10(5) M(-1)的数量级,并且它们在 H(2)O(2)作为共氧化剂的存在下还表现出对超螺旋 (SC) pUC19 DNA 的显著切割。还研究了上述配合物与牛血清白蛋白 (BSA) 结合时的构象变化。此外,还在体外条件下对所有合成化合物 (1-6) 的浓度依赖性自由基清除潜力进行了研究。还对上述配合物对 HeLa 和 A431 肿瘤细胞和 NIH 3T3 正常细胞的细胞毒性进行了测定。