标准化HILIC-FLD n-聚糖分析用于评估来自多个制造商的贝伐单抗n-糖基化异质性和糖基化相关质量属性

IF 1.3 4区 化学 Q4 BIOCHEMICAL RESEARCH METHODS
Doudou Lou, Yuan Zhu, Jingke Fan, Lin Fan, Qingfu Zhu, Yihong Lu, Shuqiang Zhao
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引用次数: 0

摘要

n -糖基化异质性对单克隆抗体(mAb)药物的临床安全性、有效性、药代动力学(PK)和药效学具有重要影响,成为备受关注的关键质量属性(CQA)。在不同厂家生产的贝伐单抗注册质量标准中,要么缺乏对n -糖基化的监管,要么各厂家的检测方法和标准差异很大,导致结果的可比性受损。此外,现有的质量控制体系对糖相关理化性质与糖基化修饰之间的关系重视不足。本研究建立了一种标准化的亲水相互作用液相色谱-荧光检测(HILIC-FLD) n -聚糖谱分析方法,该方法被证明更省时、更易于操作,可用于8家不同厂家提供的贝伐单抗产品中n -聚糖谱的平行分析。我们还关注了糖基化相关的cqa,包括电荷异质性、等电点、非糖基化重链(NGHC)和聚集体。结果显示,不同生产厂家的n -糖基化、NGHC和团聚体有明显差异。在所有单克隆抗体中,主要糖型的丰度顺序相似,但相同糖型的百分比差异很大。综上所述,该标准化方法可为厂商间糖基化及相关CQA异质性的平行分析和比较提供一种可靠、高效、实用的方法,为更有效地控制单抗药物的质量提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Standardized HILIC-FLD N-Glycan Analysis for Assessing N-Glycosylation Heterogeneity and Glycosylation-Related Quality Attributes in Bevacizumab from Multiple Manufacturers

N-glycosylation heterogeneity has a significant impact on the clinical safety, efficacy, pharmacokinetics (PK), and pharmacodynamics of monoclonal antibody (mAb) drugs, thus becoming a critical quality attribute (CQA) of great concern. In the registration quality standards for bevacizumab produced by different manufacturers, either lacking supervision of N-glycosylation or the detection methods and criteria vary greatly among manufacturers, leading to compromised comparability of results. Besides, the existing quality control system pays insufficient attention to the correlation between glyco-relevant physicochemical properties and glycosylated modification. In this study, a standardized hydrophilic interaction liquid chromatography-fluorescence detection (HILIC-FLD) N-glycan profiling method was developed, which had been proven to be more time-saving and easier to operate and was used for the parallel analysis of N-glycan profiles in bevacizumab products provided by 8 different manufacturers. We also paid attention to the glycosylation-related CQAs including charge heterogeneity, isoelectric point, non-glycosylated heavy chain (NGHC) and aggregates. Results revealed obvious difference in N-glycosylation, NGHC and aggregates among manufacturers. Among all the mAbs, the abundance of major glycoforms showed similar order yet the percentage of the same glycoform varies greatly. In summary, the standardized method could offer a reliable, efficient and practical approach for the parallel analysis and comparison of glycosylation and related CQA heterogeneity among manufacturers, providing a reference for more effective quality control of mAb drugs.

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来源期刊
Chromatographia
Chromatographia 化学-分析化学
CiteScore
3.40
自引率
5.90%
发文量
103
审稿时长
2.2 months
期刊介绍: Separation sciences, in all their various forms such as chromatography, field-flow fractionation, and electrophoresis, provide some of the most powerful techniques in analytical chemistry and are applied within a number of important application areas, including archaeology, biotechnology, clinical, environmental, food, medical, petroleum, pharmaceutical, polymer and biopolymer research. Beyond serving analytical purposes, separation techniques are also used for preparative and process-scale applications. The scope and power of separation sciences is significantly extended by combination with spectroscopic detection methods (e.g., laser-based approaches, nuclear-magnetic resonance, Raman, chemiluminescence) and particularly, mass spectrometry, to create hyphenated techniques. In addition to exciting new developments in chromatography, such as ultra high-pressure systems, multidimensional separations, and high-temperature approaches, there have also been great advances in hybrid methods combining chromatography and electro-based separations, especially on the micro- and nanoscale. Integrated biological procedures (e.g., enzymatic, immunological, receptor-based assays) can also be part of the overall analytical process.
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