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Advances in capillary electrophoresis for the life sciences

机译:生命科学毛细管电泳的研究进展

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摘要

Capillary electrophoresis (CE) played an important role in developments in the life sciences. The technique is nowadays used for the analysis of both large and small molecules in applications where it performs better than or is complementary to liquid chromatographic techniques. In this review, principles of different electromigration techniques, especially capillary isoelectric focusing (CIEF), capillary gel (CGE) and capillary zone electrophoresis (CZE), are described and recent developments in instrumentation, with an emphasis on mass spectrometry (MS) coupling and microchip CE, are discussed. The role of CE in the life sciences is shown with applications in which it had a high impact over the past few decades. In this context, current practice for the characterization of biopharmaceuticals (therapeutic proteins) is shown with CIEF, CGE and CZE using different detection techniques, including MS. Subsequently, the application of CGE and CZE, in combination with laser induced fluorescence detection and CZE-MS are demonstrated for the analysis of protein-released glycans in the characterization of biopharmaceuticals and glycan biomarker discovery in biological samples. Special attention is paid to developments in capillary coatings and derivatization strategies for glycans. Finally, routine CE analysis in clinical chemistry and latest developments in metabolomics approaches for the profiling of small molecules in biological samples are discussed. The large number of CE applications published for these topics in recent years clearly demonstrates the established role of CE in life sciences.
机译:毛细管电泳(CE)在生命科学的发展中发挥着重要作用。如今,该技术用于分析其在其表现优于或与液相色谱技术互补的应用中的大型和小分子。在该综述中,描述了不同电迁移技术,尤其是毛细管等电聚焦(凸毛凝胶(CGE)和毛细管区电泳(CZE)的原理,并在仪器中进行最新的发展,重点是质谱(MS)耦合和耦合讨论了Microchip Ce。 CE在生命科学中的作用显示在过去的几十年里,它的应用是高影响的应用。在这种情况下,使用不同的检测技术,包括不同的检测技术,示出了生物药物(治疗蛋白)表征的目前的实践(治疗蛋白),包括MS。随后,对激光诱导的荧光检测和CZE-MS组合的CGE和CZE的应用用于分析蛋白质释放的聚糖在生物样品中生物制药和聚糖生物标志物发现的表征中的分析。对聚糖的毛细血管涂料和衍生化策略的发展有特别注意。最后,讨论了临床化学的常规CE分析以及在生物样品中的小分子分析的代谢组学方法中的最新发展。近年来这些主题公布的大量CE申请清楚地表明了CE在生命科学中的既定作用。

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