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Derivatization of carbohydrates for analysis by chromatography; electrophoresis and mass spectrometry

机译:碳水化合物衍生化,用于色谱分析;电泳和质谱

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Carbohydrates display a large diversity of structures and their analysis presents many obstacles as the result of properties such as isomeric diversity, existence of branched structures and the lack of chromophores or fluorophores. Consequently, many analytical approaches depend on the application of chemical modifications such as hydrolysis or derivative formation. This review covers various aspects of derivatization that are used for such approaches as improving thermal stability and volatility for gas-phase analyses, introduction of fluorophores for optical detectors, introduction of charge for mass spectral analyses and attachment of bioaffinity tags for bioactivity studies. Reducing carbohydrates contain, in addition to multiple hydroxyl groups, several other sites for derivatization such as the single anomeric site that has been used in numerous methods for attaching various property-enhancing tags. Other sites are restricted to specific carbohydrates but include carboxy groups in sialic acids and amino groups in glycosylamines. All of these groups have been the targets of derivatization and this review attempts to summarise the main methods used for these various functional groups.
机译:碳水化合物显示出很大的结构多样性,并且由于诸如异构体多样性,分支结构的存在以及发色团或荧光团的缺乏之类的特性,其分析提出了许多障碍。因此,许多分析方法取决于化学修饰的应用,例如水解或衍生物的形成。这篇综述涵盖了衍生化的各个方面,这些方面可用于改善气相分析的热稳定性和挥发性,引入用于光学检测器的荧光团,引入用于质谱分析的电荷以及用于生物活性研究的生物亲和标签的附件。还原性碳水化合物除了具有多个羟基外,还包含其他几个衍生化位点,例如单个异头异构位点,该位点已用于多种附着各种特性增强标签的方法中。其他位点仅限于特定的碳水化合物,但包括唾液酸中的羧基和糖基胺中的氨基。所有这些组都是衍生化的目标,本综述试图总结用于这些各种官能团的主要方法。

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