首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Antibacterial studies, DNA oxidative cleavage, and crystal structures of Cu(II) and Co(II) complexes with two quinolone family members, ciprofloxacin and enoxacin
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Antibacterial studies, DNA oxidative cleavage, and crystal structures of Cu(II) and Co(II) complexes with two quinolone family members, ciprofloxacin and enoxacin

机译:具有两个喹诺酮家族成员环丙沙星和依诺沙星的Cu(II)和Co(II)配合物的抗菌研究,DNA氧化裂解和晶体结构

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Nine coordination compounds of Cu(II) and Co(II) with Ciprofloxacin (HCp) and Enoxacin (HEx) as ligands have been prepared and characterized. Single crystal structural determinations of [Cu(HCp)2(ClO4)2].6H2O (1) and [Co(HEx)2(Ex)]Cl.2CH(3)OH.12H2O (4) are reported. The crystal of 1 is composed of [Cu(HCp)2(ClO4)2] units with the two perchlorate anions semicoordinated, and uncoordinated water molecules. The copper ion, at a crystallographic inversion centre, is in a tetragonally distorted octahedral environment. The structure of 4 consists of cationic monomeric [Co(HEx)2(Ex)]+ units, chloride anions, and uncoordinated methanol and water molecules. The complex is six-coordinate, with a slightly distorted octahedral environment around the metal centre. Some complexes of ciprofloxacin and enoxacin were screened for their activity against several bacteria, showing activity similar to that of the corresponding free ligands. All compounds tested were more active against Gram-negative bacteria than against Gram-positive bacteria. Ciprofloxacin hydrochloride and its complexes were more active than enoxacin and its complexes. In addition, the bactericidal studies against Staphylococcus aureus ATCC 25923 reveal that one complex exhibits the "paradoxical effect" (diminution in the number of bacteria killed at high drug concentration), which has been described and related to the mechanism of action of quinolones, but three other complexes do not, suggesting different mechanisms of bactericidal action. The ability of Cu(HCp)2(NO3)2.6H2O to cleave DNA has been determined. The results show that the complex behaves as an efficient chemical nuclease with ascorbate/hydrogen peroxide activation. Mechanistic studies using different inhibiting reagents reveal that hydroxyl radicals are involved in the DNA scission process mediated by this compound.
机译:以环丙沙星(HCp)和依诺沙星(HEx)为配体制备了九种Cu(II)和Co(II)配位化合物。报告了[Cu(HCp)2(ClO4)2] .6H2O(1)和[Co(HEx)2(Ex)] Cl.2CH(3)OH.12H2O(4)的单晶结构测定。 1的晶体由[Cu(HCp)2(ClO4)2]单元组成,两个高氯酸根阴离子是半配位的和未配位的水分子。处于晶体学反转中心的铜离子处于四边形扭曲的八面体环境中。 4的结构由阳离子单体[Co(HEx)2(Ex)] +单元,氯离子和未配位的甲醇和水分子组成。该建筑群为六坐标,金属中心周围的八面体环境略有扭曲。筛选了环丙沙星和依诺沙星的某些复合物对几种细菌的活性,显示出与相应的游离配体相似的活性。测试的所有化合物对革兰氏阴性细菌的活性均大于对革兰氏阳性细菌的活性。盐酸环丙沙​​星及其络合物比依诺沙星及其络合物更具活性。此外,针对金黄色葡萄球菌ATCC 25923的杀菌研究表明,一种复合物表现出“悖论效应”(在高药物浓度下杀死的细菌数量减少),这已被描述并与喹诺酮类药物的作用机理有关,但是其他三个复合物则没有,提示其杀菌作用机理不同。已经确定了Cu(HCp)2(NO3)2.6H2O切割DNA的能力。结果表明,该复合物表现为具有抗坏血酸/过氧化氢活化作用的有效化学核酸酶。使用不同抑制剂的机理研究表明,羟基自由基参与了该化合物介导的DNA分裂过程。

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