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完整单克隆抗体的直接糖基化分析:结合糖型的电喷雾电离质谱(ESI MS)和聚糖片段的基质辅助激光解吸电离源内衰变质谱(MALDI-in source decay MS)。

Direct glycosylation analysis of intact monoclonal antibodies combining ESI MS of glycoforms and MALDI-in source decay MS of glycan fragments.

作者信息

Senini Isabella, Tengattini Sara, Rinaldi Francesca, Massolini Gabriella, Gstöttner Christoph, Reusch Dietmar, Donini Marcello, Marusic Carla, van Veelen Peter A, Domínguez-Vega Elena, Wuhrer Manfred, Temporini Caterina, Nicolardi Simone

机构信息

University of Pavia, via Taramelli 12, Pavia, Italy.

Leiden University Medical Center, Albinusdreef 2, Leiden, The Netherlands.

出版信息

Commun Chem. 2024 Sep 12;7(1):203. doi: 10.1038/s42004-024-01297-x.

Abstract

Monoclonal antibody (mAb) glycoengineering has the potential to improve the efficacy of biopharmaceuticals by fine-tuning specific biological properties. Glycosylation analysis is key to monitoring the glycoengineering process. Various mass spectrometry (MS)-based methods are available to characterize mAb glycosylation at different structural levels, but comprehensive analysis is typically time-consuming and costly. Here, we present an approach that combines conventional intact mass measurement of glycoforms by direct infusion ESI-MS with an advanced MALDI-in-source decay FT-ICR MS method for direct analysis of glycans in intact mAbs, without the need for enzymatic release and separation. Using a sodium-doped MALDI matrix, glycans were directly released as ISD fragment ions from the intact mAbs during the ionization process. Measurement of A fragment signals yielded reproducible glycan profiles that were consistent with conventional methods, yet was achieved with unprecedented speed, providing complementary information to that obtained through intact mass measurement. The methods were applied to standard and glycoengineered trastuzumab and rituximab, allowing rapid glycosylation profiling and structural analysis of glycans by tandem MS of selected ISD fragment ions. This fast approach can facilitate the early-phase development of glycoengineering processes by constraining further in-depth analyses. We envision a broader applicability in studies focused on glycosylation changes in mAbs.

摘要

单克隆抗体(mAb)糖基工程有潜力通过微调特定生物学特性来提高生物制药的疗效。糖基化分析是监测糖基工程过程的关键。有多种基于质谱(MS)的方法可用于在不同结构水平上表征mAb糖基化,但全面分析通常既耗时又昂贵。在此,我们提出一种方法,该方法将通过直接进样电喷雾电离质谱(ESI-MS)对糖型进行常规完整质量测量与一种先进的基质辅助激光解吸电离源内衰变傅里叶变换离子回旋共振质谱(MALDI-in-source decay FT-ICR MS)方法相结合,用于直接分析完整mAb中的聚糖,而无需酶解和分离。使用掺钠的MALDI基质,在电离过程中聚糖直接从完整mAb中作为源内衰变(ISD)碎片离子释放出来。对A碎片信号的测量产生了与传统方法一致的可重复聚糖谱图,而且速度空前,为通过完整质量测量获得的信息提供了补充。这些方法应用于标准曲妥珠单抗和糖基工程化曲妥珠单抗以及利妥昔单抗,通过对选定的ISD碎片离子进行串联质谱分析,能够快速进行糖基化谱分析和聚糖结构分析。这种快速方法可以通过限制进一步的深入分析来促进糖基工程过程的早期开发。我们设想该方法在专注于mAb糖基化变化的研究中有更广泛的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ecc/11390885/72b540eb8048/42004_2024_1297_Fig1_HTML.jpg

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