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基于 LC-MS 的蛋白质生物治疗药物分析的最新进展——掌握不断增加的复杂结构带来的分析挑战。

Recent advances in LC-MS based characterization of protein-based bio-therapeutics - mastering analytical challenges posed by the increasing format complexity.

机构信息

Roche Diagnostics GmbH, Nonnenwald 2, 82377 Penzberg, Germany.

Roche Diagnostics GmbH, Nonnenwald 2, 82377 Penzberg, Germany.

出版信息

J Pharm Biomed Anal. 2020 Jul 15;186:113251. doi: 10.1016/j.jpba.2020.113251. Epub 2020 Mar 10.

Abstract

Alongside the success of protein-based bio-therapeutics over the last decades and facilitated by advances both in protein engineering and manufacturing, new product formats progressively enter into the biopharmaceutical industry's pipelines with major implications on the analytical methods used for their characterization. While conventional approaches have proved sufficient for standard (IgG-like) molecules, the increased complexity of novel formats requires proper adjustments of the employed methodologies, in particular with regard to separation-based techniques coupled to UV/FLD detection. After introducing the status quo for the characterization of biopharmaceuticals in quality control settings, this review provides a comprehensive portrayal of emerging LC-MS based technologies, which have already demonstrated their potential to complement the existing analytical toolbox. In this context, the benefits of native LC-MS and two-/multidimensional LC-MS applications to assess product attributes while preserving the higher-order structure are discussed based on challenges arising from the analysis of complex product formats.

摘要

在过去几十年中,基于蛋白质的生物治疗药物取得了成功,并且得益于蛋白质工程和制造方面的进步,新的产品形式逐渐进入生物制药行业的产品线,这对用于其特性描述的分析方法产生了重大影响。虽然传统方法已被证明足以用于标准(IgG 样)分子,但新型制剂形式的复杂性增加需要对所采用的方法进行适当调整,特别是对于与 UV/FLD 检测相结合的基于分离的技术。在介绍质量控制环境中生物制药特性描述的现状后,本综述全面描述了新兴的基于 LC-MS 的技术,这些技术已经证明了它们在补充现有分析工具包方面的潜力。在这方面,根据分析复杂产品形式所带来的挑战,讨论了基于 LC-MS 和二维/多维 LC-MS 应用在保留高级结构的同时评估产品属性的优势。

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