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采用 mD-LC-MS 肽图法监测细胞培养生产过程中复杂 Fc 融合蛋白的多个质量属性。

Monitoring multiple quality attributes of a complex Fc-fusion protein during cell culture production processes by mD-LC-MS peptide mapping.

机构信息

Protein Analytical Chemistry, Genentech, 1 DNA Way, South San Francisco, CA, 94080, USA.

iLabs, Genentech, 1 DNA Way, South San Francisco, CA, 94080, USA.

出版信息

Talanta. 2022 Aug 15;246:123519. doi: 10.1016/j.talanta.2022.123519. Epub 2022 May 1.

Abstract

Fc-fusion proteins represent a successful class of biopharmaceutical products. They are considered highly heterogeneous products due to the common degradation of amino acids that occurs during their production in upstream and downstream processes (e.g., oxidation and deamidation) and, above all, their complex glycosylation profile. Multi-dimensional liquid chromatography-mass spectrometry (mD-LC-MS) has recently gained much interest for process analytical technology, enabling the integration of this analytical technology in production and purification environments. In this study, an online mD-LC-MS/MS peptide mapping method was developed for monitoring multiple quality attributes, including the N-glycosylation state of a complex Fc-fusion protein, which is made by combining two heavily glycosylated cytokines with an Fc domain. This fully automated workflow includes sample purification, reduction, digestion, peptide mapping, and subsequent mass spectrometric analysis. Two immobilized enzyme cartridges based on trypsin and Lys-C protease were employed to generate a detailed glycosylation mapping, as trypsin allowed the identification of only one of four glycosylation sites, while Lys-C was more informative for two other sites. Site-specific glycosylation information such as antennarity, sialyation, and core fucosylation state was also determined. In addition to glycans, other post-translational modifications could be monitored simultaneously during the cell culture production processes by the mD-LC-MS/MS approach. In summary, the generated data demonstrate the applicability of mD-LC-MS for the monitoring and trending of multiple attributes for complex antibody formats over production processes in an automated and fast manner, compared to the complex and time-consuming traditional offline assays.

摘要

Fc 融合蛋白是一类成功的生物制药产品。由于在上下游工艺(如氧化和脱酰胺)中常见的氨基酸降解,以及其复杂的糖基化谱,它们被认为是高度异质的产品。多维液相色谱-质谱联用(mD-LC-MS)最近在过程分析技术方面引起了广泛关注,使得这种分析技术能够集成到生产和纯化环境中。在这项研究中,开发了一种在线 mD-LC-MS/MS 肽图法,用于监测多个质量属性,包括复杂 Fc 融合蛋白的 N-糖基化状态,该蛋白由两个高度糖基化的细胞因子与 Fc 结构域结合而成。这个完全自动化的工作流程包括样品纯化、还原、酶切、肽图分析和随后的质谱分析。使用了两个基于胰蛋白酶和 Lys-C 蛋白酶的固定化酶柱来生成详细的糖基化图谱,因为胰蛋白酶只能鉴定四个糖基化位点中的一个,而 Lys-C 对另外两个位点则更具信息量。还确定了天线、唾液酸化和核心岩藻糖基化状态等特定部位的糖基化信息。除了聚糖之外,mD-LC-MS/MS 方法还可以在细胞培养生产过程中同时监测其他翻译后修饰。总之,与复杂且耗时的传统离线分析相比,生成的数据证明了 mD-LC-MS 用于监测和跟踪复杂抗体结构在生产过程中多个属性的适用性,方法快速且自动化。

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