首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Metal complexes of the third-generation quinolone antimicrobial drug sparfloxacin: Structure and biological evaluation
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Metal complexes of the third-generation quinolone antimicrobial drug sparfloxacin: Structure and biological evaluation

机译:第三代喹诺酮类抗菌药物司帕沙星的金属配合物:结构与生物学评价

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摘要

Five metal complexes of the third-generation quinolone antimicrobial agent sparfloxacin with Fe~3+, VO~2+, Mn~2+, Ni~2+ and UO~2+2 have been prepared and characterized with physicochemical and spectroscopic techniques. In these complexes, sparfloxacin acts as a bidentate deprotonated ligand bound to the metal through the ketone oxygen and a carboxylate oxygen. The complexes are six-coordinate with distorted octahedral geometry. For VO(sparfloxacinato)_2(H_2O) the axial position, trans to the vanadyl oxygen, is occupied by a ketone oxygen atom. Molecular mechanics calculations have been performed in order to propose a model for the structure of each complex. The antimicrobial activity of the complexes has been tested against three microorganisms showing that they exhibit lower activity than free sparfloxacin. UV spectroscopic titration with calf-thymus DNA (CT DNA) has shown that the complexes can bind to CT DNA and the binding constants to CT DNA have been calculated. The cyclic voltammograms of the complexes in the presence of CT DNA have shown that they bind to CT DNA probably by the intercalative binding mode. Fluorescence competitive studies with ethidium bromide (EB) have revealed the ability of the complexes to displace the DNA-bound EB. The complexes exhibit good binding propensity to human and bovine serum albumin proteins having relatively high binding constant values.
机译:制备了第三代喹诺酮类抗菌药物司帕沙星与Fe〜3 +,VO〜2 +,Mn〜2 +,Ni〜2 +和UO〜2 + 2的五种金属配合物,并通过物理化学和光谱技术对其进行了表征。在这些络合物中,司帕沙星充当通过酮氧和羧酸氧与金属结合的二齿去质子化配体。配合物是六坐标的,具有扭曲的八面体几何形状。对于VO(sparfloxacinato)_2(H_2O),对位为钒氧的轴向位置被酮氧原子占据。为了提出每种复合物的结构模型,已经进行了分子力学计算。已经测试了该复合物对三种微生物的抗微生物活性,表明它们表现出的活性低于游离司帕沙星。用小牛胸腺DNA(CT DNA)进行的紫外光谱滴定表明,该复合物可以与CT DNA结合,并且已经计算出与CT DNA的结合常数。在CT DNA存在下,复合物的循环伏安图显示它们可能通过插入结合模式与CT DNA结合。与溴化乙锭(EB)的荧光竞争研究表明,该复合物具有取代DNA结合的EB的能力。该复合物对具有相对较高结合常数值的人和牛血清白蛋白具有良好的结合倾向。

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