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糖组学技术在糖生物技术中的应用进展

State-of-the-Art Glycomics Technologies in Glycobiotechnology.

机构信息

Max Planck Institute for Dynamics of Complex Technical Systems, Magdeburg, Germany.

Institute for Glycomics, Griffith University, Gold Coast, QLD, Australia.

出版信息

Adv Biochem Eng Biotechnol. 2021;175:379-411. doi: 10.1007/10_2020_143.

Abstract

Glycosylation affects the properties of biologics; thus regulatory bodies classified it as critical quality attribute and force biopharma industry to capture and control it throughout all phases, from R&D till end of product lifetime. The shift from originators to biosimilars further increases importance and extent of glycoanalysis, which thus increases the need for technology platforms enabling reliable high-throughput and in-depth glycan analysis. In this chapter, we will first summarize on established glycoanalytical methods based on liquid chromatography focusing on hydrophilic interaction chromatography, capillary electrophoresis focusing on multiplexed capillary gel electrophoresis, and mass spectrometry focusing on matrix-assisted laser desorption; we will then highlight two emerging technologies based on porous graphitized carbon liquid chromatography and on ion-mobility mass spectrometry as both are highly promising tools to deliver an additional level of information for in-depth glycan analysis; additionally we elaborate on the advantages and challenges of different glycoanalytical technologies and their complementarity; finally, we briefly review applications thereof to biopharmaceutical products. This chapter provides an overview of current state-of-the-art analytical approaches for glycan characterization of biopharmaceuticals that can be employed to capture glycoprotein heterogeneity in a biopharmaceutical context.

摘要

糖基化会影响生物制剂的特性;因此,监管机构将其归类为关键质量属性,并迫使生物制药行业在研发到产品生命周期结束的所有阶段都对其进行捕捉和控制。从原创药到生物类似药的转变进一步增加了糖分析的重要性和范围,从而增加了对能够实现可靠高通量和深入聚糖分析的技术平台的需求。在本章中,我们将首先总结基于液相色谱(重点是亲水相互作用色谱)、毛细管电泳(重点是多重毛细管凝胶电泳)和质谱(重点是基质辅助激光解吸)的现有糖分析方法;然后我们将重点介绍两种基于多孔石墨化碳液相色谱和离子迁移质谱的新兴技术,因为它们都是为深入糖分析提供附加信息的极有前途的工具;此外,我们还详细阐述了不同糖分析技术的优缺点及其互补性;最后,我们简要回顾了它们在生物制药产品中的应用。本章提供了对生物制药中聚糖特征描述的最新分析方法的概述,这些方法可用于在生物制药环境中捕捉糖蛋白的异质性。

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