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Development of Two Analytical Methods Based on Reverse Phase Chromatographic and SDS-PAGE Gel for Assessment of Deglycosylation Yield in N-Glycan Mapping

机译:基于反相色谱和SDS-PAGE凝胶的两种分析方法的开发用于评估N-糖谱中去糖基化的收率

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摘要

N-lined glycosylation is one of the critical quality attributes (CQA) for biotherapeutics impacting the safety and activity of drug product. Changes in pattern and level of glycosylation can significantly alter the intrinsic properties of the product and, therefore, have to be monitored throughout its lifecycle. Therefore fast, precise, and unbiased N-glycan mapping assay is desired. To ensure these qualities, using analytical methods that evaluate completeness of deglycosylation is necessary. For quantification of deglycosylation yield, methods such as reduced liquid chromatography–mass spectrometry (LC-MS) and reduced capillary gel electrophoresis (CGE) have been commonly used. Here we present development of two additional methods to evaluate deglycosylation yield: one based on LC using reverse phase (RP) column and one based on reduced sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE gel) with offline software (GelAnalyzer). With the advent of rapid deglycosylation workflows in the market for N-glycan profiling replacing overnight incubation, we have aimed to quantify the level of deglycosylation in a selected rapid deglycosylation workflow. Our results have shown well resolved peaks of glycosylated and deglycosylated protein species with RP-LC method allowing simple quantification of deglycosylation yield of protein with high confidence. Additionally a good correlation, ≥0.94, was found between deglycosylation yields estimated by RP-LC method and that of reduced SDS-PAGE gel method with offline software. Evaluation of rapid deglycosylation protocol from GlycanAssure™ HyPerformance assay kit performed on fetuin and RNase B has shown complete deglycosylation within the recommended protocol time when evaluated with these techniques. Using this kit, N-glycans from NIST mAb were prepared in 1.4 hr and analyzed by hydrophilic interaction chromatography (HILIC) ultrahigh performance LC (UHPLC) equipped with a fluorescence detector (FLD). 37 peaks were resolved with good resolution. Excellent sample preparation repeatability was found with relative standard deviation (RSD) of <5% for peaks with >0.5% relative area.
机译:N线糖基化是影响药物产品安全性和活性的生物治疗药物的关键质量属性(CQA)之一。糖基化模式和水平的改变会显着改变产品的内在特性,因此,必须在产品的整个生命周期中对其进行监控。因此,需要快速,精确且无偏见的N-聚糖作图分析。为了确保这些质量,必须使用评估去糖基化完整性的分析方法。为了量化脱糖基化的收率,通常使用诸如还原液相色谱-质谱法(LC-MS)和还原毛细管凝胶电泳(CGE)之类的方法。在这里,我们介绍了另外两种评估脱糖基化产率的方法的开发:一种基于LC使用反相(RP)色谱柱的方法,另一种基于脱机十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE凝胶)的离线软件(GelAnalyzer)。随着市场上用于快速分离N聚糖的快速去糖基化工作流程取代隔夜孵育的出现,我们旨在量化所选快速去糖基化工作流程中去糖基化水平。我们的结果表明,使用RP-LC方法可以很好地分辨糖基化和去糖基化蛋白质种类的峰,从而可以轻松地定量分析蛋白质的去糖基化产率。另外,通过RP-LC方法估计的脱糖基化产率与使用离线软件的还原SDS-PAGE凝胶法估计的脱糖基化产率之间具有良好的相关性,≥0.94。使用胎球蛋白和RNase B进行的GlycanAssure™HyPerformance分析试剂盒对快速脱糖基化方案的评估显示,在使用这些技术进行评估时,在建议的方案时间内可以完全脱糖基化。使用该试剂盒,可在1.4分钟内从NIST mAb制备N-聚糖,并通过配备荧光检测器(FLD)的亲水相互作用色谱(HILIC)超高效液相色谱(UHPLC)进行分析。以良好的分辨率分离出37个峰。对于相对面积> 0.5%的峰,发现样品制备的重复性极好,相对标准偏差(RSD)<5%。

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