Institute of Deep-sea Science and Engineering, Chinese Academy of Sciences, Sanya, Hainan, 572000, China; NUS Environmental Research Institute, National University of Singapore, T-Lab Building, 5A Engineering Drive 1, 117411, Singapore.
Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore S117543.
Talanta. 2022 Mar 1;239:123061. doi: 10.1016/j.talanta.2021.123061. Epub 2021 Nov 15.
Recombinant protein biopharmaceuticals comprise a significant portion of the current drug development landscape. The glycosylation profile of these proteins is a key quality parameter as it can affect their safety, efficacy, and stability. However, glycan analysis is challenging because of the complexity of their structures. To overcome this challenge in achieving accurate glycan identification, cross-identification of N-Glycans by CE-LIF method using two capillary coatings and three labeling dyes was developed in this work. This work explored whether complementary separation capabilities can be achieved using homemade polyvinyl alcohol (PVA) coating and commercial Guarant™ (Guarant) coating in the analysis of N-glycans. Similar separation profiles were observed using the two capillary coatings, and hence the N-glycan GU databases generated by these coatings were comparable and complementary. The performance of cross-validation by labeling with three fluorescent dyes indicated that low covariance of APTS and Turquoise™ labeling can be obtained, and hence these two labeling mechanisms provided better accuracy for the identification of glycans. Superior reproducibility with RSDs less than 1% for all target glycan standards was achieved by the internal standards (IS) method using maltodextrin ladders as additives in the separation buffer. The developed CE-LIF analysis method was applied to the identification of N-glycans in IgG samples.
重组蛋白生物制药在当前的药物开发领域中占据重要地位。这些蛋白质的糖基化谱是一个关键的质量参数,因为它会影响它们的安全性、疗效和稳定性。然而,由于其结构的复杂性,糖基分析具有挑战性。为了克服在实现准确糖基识别方面的这一挑战,本工作开发了使用两种胶束涂层和三种标记染料的 CE-LIF 方法进行 N-糖基的交叉识别。本工作探讨了在 N-糖基分析中使用自制的聚乙烯醇(PVA)涂层和商业 Guarant™(Guarant)涂层是否可以实现互补的分离能力。两种胶束涂层观察到相似的分离谱,因此由这两种涂层生成的 N-糖基 GU 数据库具有可比性和互补性。三种荧光染料标记的交叉验证性能表明,可以获得 APTS 和 Turquoise™标记的低协方差,因此这两种标记机制为糖基的识别提供了更好的准确性。通过在分离缓冲液中添加麦芽糊精梯作为添加剂的内标(IS)方法,可以实现所有靶标糖基标准的重复性良好,RSD 小于 1%。所开发的 CE-LIF 分析方法已应用于 IgG 样品中 N-糖基的鉴定。