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Advantages and Pitfalls of Capillary Electrophoresis of Pharmaceutical Compounds and Their Enantiomers in Complex Samples: Comparison of Hydrodynamically Opened and Closed Systems

机译:复杂样品中药物化合物和它们对映体的毛细管电泳的优点和缺陷:流体动力学和封闭系统的比较

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摘要

Several research disciplines require fast, reliable and highly automated determination of pharmaceutically active compounds and their enantiomers in complex biological matrices. To address some of the challenges of Capillary Electrophoresis (CE), such as low concentration sensitivity and performance degradation linked to the adsorption and interference of matrix components, CE in a hydrodynamically closed system was evaluated using the model compounds Pindolol and Propranolol. Some established validation parameters such as repeatability of injection efficiency, resolution and sensitivity were used to assess its performance, and it was found to be broadly identical to that of hydrodynamically opened systems. While some reduction in separation efficiency was observed, this was mainly due to dispersion caused by injection and it had no impact on the ability to resolve enantiomers of model compounds even when spiked into complex biological matrix such as blood serum. An approximately 18- to 23-fold increase in concentration sensitivity due to the employment of wide bore capillaries was observed. This brings the sensitivity of CE to a level similar to that of liquid chromatography techniques. In addition to this benefit and unlike in hydrodynamically opened systems, suppression of electroosmotic flow, which is essential for hydrodynamically closed systems practically eliminates the matrix effects that are linked to protein adsorption.
机译:几个研究学科需要药物活性化合物及其在复杂生物基质对映体的快速,可靠和高度自动化的测定。为了解决一些毛细管电泳(CE),所面临的挑战,例如低浓度的灵敏度和性能下降链接到吸附和基质组分的干扰,CE在一个封闭的流体动力系统中评估使用模型化合物吲哚洛尔和普萘洛尔。一些建立验证参数如喷射效率,分辨率和灵敏度的重复性被用来评估它的性能,并且它被认为是广泛地等同于流体动力学打开系统。虽然观察到分离效率有所下降,这主要是由于由注入的分散性和它对即使当掺入复杂生物基质例如血清的能力模型化合物的拆分对映体没有影响。观察到由于使用的大口径的毛细血管的大致18〜23倍的增加浓度灵敏度。这使CE的至类似于液体色谱技术水平的灵敏度。除了这种益处和不像在流体动力学打开系统,电渗流,其是用于流体动力学封闭系统必不可少的抑制实际上消除链接到蛋白质吸附基质的效果。

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