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Analysis of native and APTS-labeled N-glycans by capillary electrophoresis/time-of-flight mass spectrometry

机译:通过毛细管电泳/飞行时间质谱分析天然和APTS标记的N-聚糖

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摘要

The glycosylation of proteins is of particular interest in biopharmaceutical applications. The detailed characterization of glycosylation based on the released carbohydrates is mandatory since the protein stability, folding, and efficacy are strongly dependent on the structural diversity inherent in the glycan moieties of a glycoprotein. For glycan pattern analysis, capillary electrophoresis with laser-induced fluorescence using 8-aminopyrene-1,3,6-trisulfonic acid (APTS)-labeled glycans is used frequently. In this paper, a robust capillary electrophoresis-mass spectroscopy method both for the analysis of APTS-labeled glycans and unlabeled charged glycans is presented. The background electrolyte consists of 0.7 M ammonia and 0.1 M ~ε-aminocaproic acid in water/methanol 30:70 (v/v). High separation efficiency including separation of structural isomers was obtained. The method was validated in terms of reproducibility and linearity. Submicromolar sensitivity is achieved with linearity up to 24 μM. The ability to analyze APTS-labeled, as well as unlabeled, charged glycans enables the determination of labeling and ionization efficiency: APTS-labeled glycans show a factor of three better ionization efficiency compared to non-labeled native glycans. The presented method is applied to the analysis of pharmaceutical products. Furthermore, the system can be applied to the analysis of 2-ANSA-labeled glycans, though separation efficiency is limited. [Figure not available: see fulltext.]
机译:蛋白质的糖基化在生物制药应用中特别重要。基于释放的碳水化合物的糖基化的详细表征是强制性的,因为蛋白质的稳定性,折叠性和功效在很大程度上取决于糖蛋白的糖基固有的结构多样性。对于聚糖模式分析,经常使用毛细管电泳,使用8-氨基py-1,3,6-三磺酸(APTS)标记的聚糖,通过激光诱导荧光。本文提出了一种鲁棒的毛细管电泳-质谱法,用于分析APTS标记的聚糖和未标记的带电荷的聚糖。背景电解质由水/甲醇30:70(v / v)中的0.7 M氨和0.1 M〜ε-氨基己酸组成。获得了包括结构异构体的分离在内的高分离效率。该方法已通过重现性和线性验证。亚微摩尔灵敏度的线性度最高可达24μM。分析APTS标记的和未标记的带电聚糖的能力能够确定标记和电离效率:与未标记的天然聚糖相比,APTS标记的聚糖显示出三个更好的电离效率。提出的方法适用于药品分析。此外,该系统可用于分析2-ANSA标记的聚糖,尽管分离效率有限。 [图不可用:请参见全文。]

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