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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Analysis of nucleic acid constituents by on-line capillary electrophoresis-mass spectrometry
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Analysis of nucleic acid constituents by on-line capillary electrophoresis-mass spectrometry

机译:在线毛细管电泳-质谱法分析核酸成分

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摘要

This review is focused on the capillary electrophoresis-mass spectrometric (CE-MS) analysis of nucleic acid constituents in the broadest sense, going from nuclectides and adducted nucleotides over nucleoside analogues to oligonucleotides. These nucleic acid constituents play an important role in a variety of biochemical processes. Hence, their isolation, identification, and quantification will undoubtedly help reveal the process of life and disease mechanisms, such as carcinogenesis, and can also be useful for antitumor and antiviral drug research to provide valuable information about mechanism of action, pharmacokinetics, pharmacodynamics, toxicity, therapeutic drug level monitoring, and quality control related to this substance class. Fundamental investigations into their structure, the search for modifications, the occurrence and biochemical impact of structural variation amongst others, are therefore of great value. In view of the related bicanalytical procedures, the coupling of CE to MS has emerged as a powerful tool for the analysis of the complex mixtures of nucleic acid constituents: CE confers rapid analysis and efficient resolution, while MS provides high selectivity and sensitivity with structural characterization of minute amounts of compound. After an introduction about the biochemical and analytical perspectives on the nucleic acid constituents, the different modes of CE used in this field of research as well as the relevant CE-MS interfaces and the difficulties associated with quantitative CE-MS are briefly discussed. A large section is finally devoted to field-oriented applications.
机译:这篇综述着眼于最广义的核酸成分的毛细管电泳质谱(CE-MS)分析,从核苷和核苷类似物上的加成核苷酸到寡核苷酸。这些核酸成分在各种生化过程中起着重要作用。因此,它们的分离,鉴定和定量无疑将帮助揭示生命和疾病机制的过程,例如致癌作用,并且还可用于抗肿瘤和抗病毒药物研究,以提供有关作用机制,药代动力学,药代动力学,毒性的有价值的信息。 ,与该物质类别有关的治疗药物水平监测和质量控制。因此,对其结构进行基础研究,寻找修饰,结构变异的发生和生化影响等具有重要价值。鉴于相关的生物学分析程序,CE与MS的耦合已成为分析核酸成分的复杂混合物的有力工具:CE可提供快速分析和高效分离,而MS具有结构表征的高选择性和灵敏度微量的化合物。在介绍了有关核酸成分的生化和分析观点之后,简要讨论了在该研究领域中使用的CE的不同模式以及相关的CE-MS接口以及与定量CE-MS相关的困难。最后,很大一部分内容专门用于面向领域的应用程序。

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