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Chemical Structure and Composition of Major Glycans Covalently Linked to Therapeutic Monoclonal Antibodies by Middle-Down Nuclear Magnetic Resonance

机译:通过下下核磁共振与治疗单克隆抗体共价连接的主要聚糖的化学结构和组成

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摘要

Glycosylation of monoclonal antibodies (mAbs) is a critical quality attribute that can impact mAb drug efficacy and safety. The mAb glycans are inherently heterogeneous in chemical structure and composition of monosaccharides. The established fluorescence or mass-spectrometry (MS) detection methods for glycosylation evaluation may require multiple steps of glycan cleavage or extensive digestion of the mAb, chemical labeling of the glycans, column separation and report the chemical identity of glycans indirectly through retention time and molecular weight values. In demonstrating chemical structure similarity and comparability among mAb drugs, orthogonal analytical methods for measuring glycan chemistry are needed to ensure the quality of drug products. Here, a “middle-down” NMR method is developed as a proof-of-concept approach to measure the domain-specific glycosylation of marketed mAb drugs without cleavage of the glycan moieties. Complete glycan ~(1)H/~(13)C chemical shift assignments were obtained at ~(13)C natural abundance from commercial standard glycans that allowed unambiguous determination of the chemical structure, glycosidic linkage position, and anomeric configuration of each monosaccharide in the major N -glycan scaffolds found in mAb molecules. The analysis of glycan anomeric peaks in two-dimensional (2D) ~(1)H–~(13)C NMR spectra yielded metrics for clinically important mAb quality attributes (i.e., galactosylation (Gal%) and fucosylation (Fuc%)), consistent with literature results using a standard glycan-mapping method. Therefore, the middle-down NMR method provided a facile orthogonal measurement for mAb glycosylation characterization with improved chemical information content on glycan structure determination and quantification, compared to standard approaches.
机译:单克隆抗体(MAb)的糖基化是一种临界质量属性,可以影响MAB药物功效和安全性。 MAB聚糖本质上是异质的化学结构和单糖的组成。用于糖基化评价的已建立的荧光或质谱(MS)检测方法可能需要多种甘油切割或大规模消化的聚糖,聚糖的化学标记,柱分离,并通过保留时间间接地报告聚糖的化学特性和分子重量值。在展示MAB药物中的化学结构相似性和可比性,需要用于测量甘油化学的正交分析方法,以确保药品的质量。这里,发展“下下”NMR方法作为概念验证方法,以测量营销的MAB药物的域特异性糖基化而不会对甘草部分进行切割。完整的聚糖〜(1)H /〜(13)C化学换档分配在商业标准聚糖中获得〜(13)C天然丰富,允许明确测定化学结构,糖苷胶结位置和每种单糖的异常构型在mAb分子中发现的主要 n庚糖支架。二维(2D)〜(1)H-〜(13)C NMR光谱中甘油异常峰的分析产生临床重要的MAB质量属性的度量(即半乳糖基化(GAL%)和岩藻糖基(FUC百分比)),使用标准聚糖映射方法与文献结果一致。因此,与标准方法相比,下下NMR方法为MAB糖基化表征提供了用于MAB糖基化表征的体内正交测量,与标准方法相比,糖粉结构测定和定量。

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  • 来源
    《Analytical chemistry》 |2018年第18期|共9页
  • 作者单位

    Division of Pharmaceutical Analysis Office of Testing and Research Office of Pharmaceutical Quality;

    Division of Pharmaceutical Analysis Office of Testing and Research Office of Pharmaceutical Quality;

    Division of Pharmaceutical Analysis Office of Testing and Research Office of Pharmaceutical Quality;

    Division of Pharmaceutical Analysis Office of Testing and Research Office of Pharmaceutical Quality;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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