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用于治疗性单克隆抗体N-糖基化分析的电泳样品制备

Sample preparation for N-glycosylation analysis of therapeutic monoclonal antibodies by electrophoresis.

作者信息

Szekrényes Ákos, Partyka Jan, Varadi Csaba, Krenkova Jana, Foret Frantisek, Guttman András

机构信息

Horváth Laboratory of Bioseparation Sciences, University of Debrecen, Nagyerdei krt 98, Elméleti tömb, 1/111, 4032, Debrecen, Hungary.

出版信息

Methods Mol Biol. 2015;1274:183-95. doi: 10.1007/978-1-4939-2353-3_16.

Abstract

There are a considerable number of biopharmaceuticals that have been approved for clinical use in the past decade. Over half of these new generation drugs are glycoproteins, such as monoclonal antibodies or other recombinant glycoproteins, which are mostly produced in mammalian cell lines. The linked carbohydrate moieties affect not only their physicochemical properties and thermal stability but also crucial features like receptor-binding activity, circulating half-life, as well as immunogenicity. The structural diversity of these attached glycans can be manifested in altered monosaccharide composition and linkages/positions among the monosaccharide building blocks. In addition, as more and more biosimilar products hit the market, understanding the effects of their glycosylation modification has become a recent target in efficacy and safety issues. To ensure consistent quality of these products, glycosylation profiles have to be monitored and controlled in all steps of the manufacturing process, i.e., from clone selection to lot release. In this paper, we describe some of the recently introduced and commonly used sample preparation techniques for capillary electrophoresis (CE)-based profiling and structural elucidation of N-glycans. The presented protocols include protein A affinity partitioning of monoclonal antibodies (mAbs), enzymatic release of the N-linked glycans, labeling of the liberated carbohydrates, reaction mixture purification techniques to remove the excess labeling reagent, and high-resolution and rapid capillary electrophoresis-laser-induced fluorescence (CE-LIF)-based profiling of the labeled and purified N-glycans.

摘要

在过去十年中,有相当数量的生物制药已获批用于临床。这些新一代药物中超过一半是糖蛋白,如单克隆抗体或其他重组糖蛋白,它们大多在哺乳动物细胞系中生产。连接的碳水化合物部分不仅影响其物理化学性质和热稳定性,还影响诸如受体结合活性、循环半衰期以及免疫原性等关键特性。这些连接聚糖的结构多样性可表现为单糖组成以及单糖结构单元之间的连接/位置发生改变。此外,随着越来越多的生物类似药进入市场,了解其糖基化修饰的影响已成为近期疗效和安全性问题的一个目标。为确保这些产品的质量一致性,必须在制造过程的所有步骤,即从克隆选择到批放行,对糖基化谱进行监测和控制。在本文中,我们描述了一些最近引入的、常用的用于基于毛细管电泳(CE)的N-聚糖谱分析和结构解析的样品制备技术。所介绍的方案包括单克隆抗体(mAb)的蛋白A亲和分配、N-连接聚糖的酶促释放、游离碳水化合物的标记、去除过量标记试剂的反应混合物纯化技术,以及基于高分辨率和快速毛细管电泳-激光诱导荧光(CE-LIF)的标记和纯化N-聚糖谱分析。

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