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Post-column metal complexation of quinolone antibiotics in a quadrupole ion trap

机译:四极离子阱中喹诺酮类抗生素的柱后金属络合

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Post-column addition of a metal salt and an auxiliary chelating ligand via a sheath how offers an alternative strategy for promoting electrospray ionization of analytes via metal cationization, In the present study, a high-performance liquid chromatography (HPLC) mass spectrometer interface that incorporates a modified ionspray source that allows either online metal cationization or protonation is reported. The analytical utility of metal complexation is evaluated relative to protonation as a means for efficient ionization and generation of structurally diagnostic ions during HPLC separation. To improve metal cationization, an auxiliary chelating ligand is added to the sheath flow to coordinate the metal and stabilize the resulting complexes. The methodology was verified using a series of quinolone antibiotics as model analytes. Relative reaction efficiencies were compared for the protonation vs. metal complexation modes, and it was found that metal complexation with an auxiliary chelating ligand gave a three to five times better detection limit than protonation for the quinolones, Detector linearity and optimal reaction conditions are also reported. Copyright (C) 1999 John Whey & Sons, Ltd. [References: 33]
机译:柱后通过护套添加金属盐和辅助螯合配体的方法如何提供一种通过金属阳离子化促进分析物电喷雾电离的替代策略,在本研究中,结合了高效液相色谱(HPLC)质谱仪接口据报道,一种改性的离子喷雾源可以在线进行金属阳离子化或质子化。相对于质子化,评估金属络合物的分析实用性,作为在HPLC分离过程中有效电离和生成结构诊断离子的手段。为了改善金属阳离子化,将辅助螯合配体添加到鞘流中以配位金属并稳定所得络合物。使用一系列喹诺酮类抗生素作为模型分析物验证了该方法学。比较了质子化与金属络合模式的相对反应效率,发现与辅助螯合配体的金属络合提供的检出限比喹诺酮质子化的检测限高三到五倍,还报道了检测器线性和最佳反应条件。版权所有(C)1999 John Whey&Sons,Ltd. [参考:33]

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