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1H and 19F NMR relaxation studies of fleroxacin with Micrococcus luteus.

机译:氟罗沙星与黄褐微球菌的1H和19F NMR弛豫研究。

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摘要

In order to investigate and characterize interaction processes between the fluoroquinolone fleroxacin and bacterial cells we used non-selective (all resonances are excited), selective (observed resonance is excited) spin-lattice relaxation rates and spin-spin relaxation measurements. The signals of three hydrogens at different moieties of the fleroxacin molecule were considered to get an insight in the complexation behavior. The enhancement of selective relaxation rates was observed with increasing fleroxacin concentrations and keeping the bacterial mass constant. The obtained relaxation rates of the affected hydrogens were analyzed via a Lineweaver-Burk-plot to determine the KD values. Furthermore, 19F NMR spectra were recorded and spin-spin relaxation rates (R2) were determined by a Carr-Purcell-Meiboom-Gill (CPMG) pulse sequence. Because of the dependency of the line width of NMR peaks on transversal relaxation time T2, we compared the line width at half-height at different fleroxacin concentrationsin order to investigate the involvement of fluorine atoms in different positions in the complexation. All findings point to core quinolone moiety to be involved in the interaction with bacterial cells.
机译:为了研究和表征氟喹诺酮氟沙星与细菌细胞之间的相互作用过程,我们使用了非选择性(激发所有共振),选择性(观察到共振激发)自旋晶格弛豫速率和自旋自旋弛豫测量。考虑了氟沙星分子不同部分的三个氢的信号,以了解络合行为。随着氟罗沙星浓度的增加并保持细菌质量恒定,观察到选择性松弛率的提高。通过Lineweaver-Burk图分析获得的受影响氢的弛豫速率,以确定KD值。此外,记录了19 F NMR光谱,并通过Carr-Purcell-Meiboom-Gill(CPMG)脉冲序列确定了自旋-自旋弛豫率(R2)。由于NMR峰的线宽对横向弛豫时间T2的依赖性,我们比较了不同氟罗沙星浓度下半高的线宽,以研究氟原子在络合中不同位置的参与。所有发现都指出核心喹诺酮部分参与与细菌细胞的相互作用。

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