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首页> 外文期刊>Bioanalysis >Simultaneous determination of metoprolol and α-hydroxymetoprolol in human plasma using excitation-emission matrix fluorescence coupled with second-order calibration methods
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Simultaneous determination of metoprolol and α-hydroxymetoprolol in human plasma using excitation-emission matrix fluorescence coupled with second-order calibration methods

机译:使用激发发射基质荧光与二阶校准方法同时使用血浆中甲酚和α-羟甲丙醇的同时测定

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Background: Metoprolol (MET) is a β1-adrenoceptor antagonist, which is widely used in the treatment of cardiovascular diseases, and α-hydroxymetoprolol (α-OHM) is its hydroxylated metabolite. Owing to their similar structures, optimization of the condition for the chromatography approach, which is in common use for determination, is both time consuming and laborious. Results: A new and effective strategy that combines the excitation-emission matrix fluorescence with second-order calibration methods was developed for simultaneous determination of MET and α-OHM in human plasma. Conclusion: Although the fluorescence spectra of MET and α-OHM overlapped and a large number of unknown and uncalibrated fluorescent components coexisted, the developed method enables accurate concentrations together with reasonable resolution of excitation and emission profiles for the analytes of interest. An additional advantage of the proposed method is that there is no need for separation and sample pretreatment, in addition to lower cost than traditional methods.
机译:背景:甲托洛尔(Met)是一种β1-肾上腺素受体拮抗剂,其广泛用于治疗心血管疾病,α-羟甲丙醇(α-OHM)是其羟基化代谢物。由于它们类似的结构,优化了色谱法的条件,其常见用于测定,既耗时又艰苦。结果:开发了一种新的且有效的策略,其结合了与二阶校准方法的荧光,用于同时测定人血浆中的α-欧姆。结论:虽然符号和α-欧姆的荧光光谱重叠和大量未知和未凝结的荧光成分共存,但开发方法使得能够合理地分辨出感兴趣的分析物的激发和排放曲线。该方法的另一个优点是除了比传统方法的成本较低,还没有必要进行分离和样品预处理。

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