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Double-layer poly(vinyl alcohol)-coated capillary for highly sensitive and stable capillary electrophoresis and capillary electrophoresis with mass spectrometry glycan analysis

机译:双层聚乙烯醇涂层毛细管,用于高灵敏度,稳定的毛细管电泳和毛细管电泳,并具有质谱聚糖分析功能

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摘要

Glycosylation plays an important role in protein conformations and functions as well as many biological activities. Capillary electrophoresis combined with various detection methods provided remarkable developments for high-sensitivity glycan profiling. The coating of the capillary is needed for highly polar molecules from complex biosamples. A poly(vinyl alcohol)-coated capillary is commonly utilized in the capillary electrophoresis separation of saccharides sample due to the high-hydrophilicity properties. A modified facile coating workflow was carried out to acquire a novel multiple-layer poly(vinyl alcohol)-coated capillary for highly sensitive and stable analysis of glycans. The migration time fluctuation was used as index in the optimization of layers and a double layer was finally chosen, considering both the effects and simplicity in fabrication. With migration time relative standard deviation less than 1% and theoretical plates kept stable during 100 consecutive separations, the method was presented to be suitable for the analysis of glycosylation with wide linear dynamic range and good reproducibility. The glycan profiling of enzymatically released N-glycans from human serum was obtained by the presented capillary electrophoresis method combined with mass spectrometry detection with acceptable results.
机译:糖基化在蛋白质构象和功能以及许多生物学活性中起重要作用。毛细管电泳与各种检测方法相结合,为高灵敏度聚糖谱分析提供了引人注目的发展。复杂生物样品中的高极性分子需要毛细管涂层。由于具有高亲水性,因此在糖类样品的毛细管电泳分离中通常使用聚乙烯醇涂层的毛细管。进行了改进的简便涂层工作流程,以获取一种新型的多层聚乙烯醇涂层毛细管,可对聚糖进行高度灵敏和稳定的分析。考虑到制造的效果和简便性,将迁移时间的波动作为层优化的指标,最后选择了双层。迁移时间相对标准偏差小于1%,理论塔板在100次连续分离中保持稳定,因此该方法适用于线性动态范围宽,重现性好的糖基化分析。通过提出的毛细管电泳方法结合质谱检测获得了从人血清中酶促释放的N-聚糖的聚糖谱,结果令人满意。

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