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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >X-ray crystallographic, NMR and antimicrobial activity studies of magnesium complexes of fluoroquinolones - racemic ofloxacin and its S-form, levofloxacin
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X-ray crystallographic, NMR and antimicrobial activity studies of magnesium complexes of fluoroquinolones - racemic ofloxacin and its S-form, levofloxacin

机译:氟喹诺酮类镁配合物-氧氟沙星的外消旋体及其S型左氧氟沙星的X射线晶体学,NMR和抗菌活性研究

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The magnesium complexes of racemic ofloxacin (oflo) and its pure S-form levofloxacin (S-oflo) have been studied by X-ray crystallography and NMR spectroscopy. Two compounds, [Mg(R-oflo)(S-oflo)(H2O)(2)]center dot 2H(2)O (1) and [Mg(S-oflo)(2)(H2O)(2)]center dot 2H(2)O (2), respectively, have been prepared by hydrothermal reactions and their crystal structures have been determined. In both structures the anionic fluoroquinolone ligands are coordinated through the keto and carboxylate oxygens forming 1:2 Mg:oflo complexes. The two structures are practically identical except for the orientation of one of the oxazine methyl groups at the chiral center of 2 which was found in equatorial position, the other oxazine methyl groups in 1 and 2 being axial. This difference affects the stacking pattern of quinolone molecules in the cell. H-1 NMR chemical shift data and Mn(II) paramagnetic line broadening measurements on the free ofloxacin suggest that the coordination of the ligands in solution involves the keto and carboxylate oxygens. However, it is not possible to decide whether the complexes in aqueous solution have 1: 1 or 1:2 stoichiometry. The methylated piperazine nitrogen does not interact with the metal ion. Magnesium-quinolone interaction is discussed in relation to the biological activity of quinolones. The antimicrobial activity of the complexes against various microorganisms was tested and it was established that their activity is similar to, that of free quinolone drugs. (c) 2006 Elsevier Inc. All rights reserved.
机译:外消旋氧氟沙星(oflo)及其纯的S型左氧氟沙星(S-oflo)的镁配合物已通过X射线晶体学和NMR光谱进行了研究。两种化合物,[Mg(R-oflo)(S-oflo)(H2O)(2)]中心点2H(2)O(1)和[Mg(S-oflo)(2)(H2O)(2)]通过水热反应分别制备了中心点2H(2)O(2),并确定了它们的晶体结构。在这两种结构中,阴离子氟喹诺酮配体都通过酮和羧酸氧进行配位,形成1:2 Mg:oflo络合物。这两个结构实际上是相同的,只是在赤手位置的2的手性中心有一个恶嗪甲基的取向,而在1和2中的另一个恶嗪甲基是轴向的。这种差异会影响喹诺酮分子在细胞中的堆积方式。游离氧氟沙星的H-1 NMR化学位移数据和Mn(II)顺磁性线展宽测量表明,溶液中配体的配位涉及酮和羧酸氧。但是,不可能确定水溶液中的配合物的化学计量比是1:1还是1:2。甲基化哌嗪氮不与金属离子相互作用。关于喹诺酮的生物活性讨论了镁-喹诺酮相互作用。测试了该复合物对各种微生物的抗微生物活性,并确定它们的活性类似于游离喹诺酮药物的活性。 (c)2006 Elsevier Inc.保留所有权利。

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