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Triple-Internal Standard Based Glycan Structural Assignment Method for Capillary Electrophoresis Analysis of Carbohydrates

机译:基于三内标的糖类毛细管电泳结构分配方法

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Despite the ever growing use of capillary electrophoresis in biomedical research and the biopharmaceutical industry, the development of data interpretation methods is lagging behind. In this paper we report the design and implementation of a coinjected triple-internal standard method to alleviate the need of an accompanying run of the maltooligosaccharide ladder for glucose unit (GU) calculation. Based on the migration times of the coinjected standards of maltose, maltotriose, and maltopentadecaose (bracketing the peaks of interest), a data processing approach was designed and developed to set up a virtual ladder that was used for GU calculation. The data processing was tested in terms of the calculated GU values of human IgG glycans, and the resulting relative standard deviation was <= 1.07%. This approach readily supports high-throughput capillary electrophoresis systems by significantly speeding up the processing time for glycan structural assignment.
机译:尽管在生物医学研究和生物制药行业中毛细管电泳的使用不断增长,但数据解释方法的发展却滞后。在本文中,我们报告了共注射三重内标方法的设计和实现,以减轻伴随低聚麦芽糖梯进行葡萄糖单位(GU)计算的需要。根据麦芽糖,麦芽三糖和麦芽戊糖的共注射标准品的迁移时间(将感兴趣的峰括起来),设计并开发了一种数据处理方法,以建立用于GU计算的虚拟阶梯。根据人IgG聚糖的GU计算值测试了数据处理,结果相对标准偏差<= 1.07%。通过显着加快聚糖结构分配的处理时间,该方法可轻松支持高通量毛细管电泳系统。

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