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首页> 外文期刊>Analytical chemistry >Evaluation of Peptide Fractionation and Native Digestion as Two Novel Sample Preparation Workflows to Improve HCP Characterization by LC-MS/MS
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Evaluation of Peptide Fractionation and Native Digestion as Two Novel Sample Preparation Workflows to Improve HCP Characterization by LC-MS/MS

机译:作为两种新型样品制备工作流程的肽分级和天然消化的评价,以改善LC-MS / MS的HCP表征

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摘要

Host cell proteins (HCPs) are the predominant class of impurities during manufacturing of therapeutic proteins. Previous reports have successfully shown that HCP characterization by LC-MS/MS ultimately leads to drug products of superior safety and quality. Here, we present two sample preparation strategies to approach the wide dynamic range required and compared them systematically to a standard protocol. First, we describe PreOmics fractionation as an effective 2D offline strategy. Second, we evaluate an alternative digestion approach specifically designed for purified antibodies - native (nondenaturing) digestion. Both protocols increased detection sensitivity as shown by two low level HCP models. Out of a 5 ppm spike of eight common HCPs into antibody product, all spiked proteins were positively identified. Additionally, by Universa Proteomics Standard 1 (UPS-1) spiking we obtained a comprehensive coverage of 77% below 10 ppm for the native digestion. Furthermore, we were able to detect 27% to 173% more HCPs in protein A elution pools of five different antibodies and to reject new concerns of HCP coprecipitation by pellet digestion. Although it encounters new challenges, the native digestion is very attractive due its simplicity and comparability to 2D workflows. However, for complex samples such as mock transfected cell culture fermentation, best results were obtained with peptide fractionation. This study highlights the advantages of both methods and their value to facilitate LC-MS/MS approaches to become an even more powerful tool for HCP profiling.
机译:宿主细胞蛋白(HCP)是治疗蛋白质制造期间的主要杂质。之前的报告已成功显示LC-MS / MS的HCP表征最终导致卓越的安全和质量的药品。在这里,我们提出了两个样本准备策略,以接近所需的宽动态范围,并系统地与标准协议进行比较。首先,我们将Preomics分馏作为有效的2D离线策略。其次,我们评估专门为纯化的抗体的替代消化方法 - 天然(Nondenaturing)消化。这两种协议都会增加检测灵敏度,如两个低级HCP模型所示。在八个常见的HCP中出现5 ppm峰值进入抗体产物中,呈阳性鉴定所有尖刺的蛋白质。此外,通过Universa蛋白质组学标准1(UPS-1)尖峰,我们获得了77%以下的全面覆盖率,低于10 ppm的本土消化。此外,我们能够在蛋白质的洗脱池中检测27%至173%的HCP,并抑制HCP共沉淀的新担心颗粒消化。虽然它遇到了新的挑战,但由于其对2D工作流的简单性和可比性,本机消化非常有吸引力。然而,对于诸如模拟转染细胞培养发酵的复杂样品,用肽分馏获得最佳结果。本研究突出了方法的优点及其价值,以方便LC-MS / MS方法成为HCP分析的更强大的工具。

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  • 来源
    《Analytical chemistry》 |2019年第15期|共8页
  • 作者单位

    Roche Diagnost GmbH Pharma Tech Dev Analyt Nonnenwald 2 D-82377 Penzberg Germany;

    Roche Diagnost GmbH Pharma Tech Dev Analyt Nonnenwald 2 D-82377 Penzberg Germany;

    Roche Diagnost GmbH Pharma Tech Dev Analyt Nonnenwald 2 D-82377 Penzberg Germany;

    Roche Diagnost GmbH Pharma Tech Dev Analyt Nonnenwald 2 D-82377 Penzberg Germany;

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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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