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Ultraviolet derivatization of low-molecular-mass thiols for high performance liquid chromatography and capillary electrophoresis analysis

机译:低分子硫醇的紫外衍生化,用于高效液相色谱和毛细管电泳分析

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摘要

Thiols play an important role in metabolic processes of all living creatures and their analytical control is very important in order to understand their physiological and pathological function. Among a variety of methods available to measure thiol concentrations, chemical derivatization utilizing a suitable labeling reagent followed by liquid chromatographic or electrophoretic separation is the most reliable means for sensitive and specific determination of thiol compounds in real world samples. Ultraviolet detection is, for its simplicity, commonly used technique in liquid chromatography and capillary electrophoresis, and consequently many ultraviolet derivatization reagents are in used. This review summarizes HPLC and CE ultraviolet derivatization based methods, including pre-analytical considerations, procedures for sample reduction, derivatization, and separation of the primary biological aminothiols - cysteine, homocysteine, cysteinylglycine and glutathione, and most important thiol-drugs in pharmaceutical formulations and biological samples. Cognizance of the biochemistry involved in the formation of the analytes is taken.
机译:硫醇在所有生物的代谢过程中都起着重要作用,它们的分析控制对于了解其生理和病理功能非常重要。在各种可用于测量硫醇浓度的方法中,利用合适的标记试剂进行化学衍生,然后进行液相色谱或电泳分离,是在现实世界中灵敏,特异地测定硫醇化合物的最可靠方法。为了简便起见,紫外线检测是液相色谱法和毛细管电泳中常用的技术,因此使用了许多紫外线衍生试剂。这篇综述总结了基于HPLC和CE紫外线衍生化的方法,包括分析前的考虑,样品还原,衍生化和分离主要生物氨基硫醇-半胱氨酸,高半胱氨酸,半胱氨酸甘氨酸和谷胱甘肽以及药物制剂和药物中最重要的硫醇药物的方法生物样品。对参与分析物形成的生物化学的认识。

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