集成了SegFlow,µSIA和UPLC,用于直接从生物反应器中在线定量糖蛋白唾液酸。

IF 3.9 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Letha Chemmalil, Tanmay Kulkarni, Mathura Raman, Priya Singh, Yueming Qian, Chris Chumsae, Kyle McHugh, Zhuangrong Huang, Eric Hodgman, Michael C. Borys, Julia Ding, Gloria Li, Anthony Leone
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引用次数: 0

摘要

本研究强调了密切监测和控制治疗性糖蛋白(包括EPO、干扰素-γ、Orencia、Enbrel等)中唾液酸含量的重要性,因为唾液酰化水平通过影响肝唾液糖蛋白受体(ASGPR)的蛋白质清除,直接影响它们的药代动力学(PK)、免疫原性、效力和整体临床表现。ASGPR识别并结合暴露于末端半乳糖或n -乙酰半乳糖胺残基的糖蛋白,导致受体介导的内吞作用。最近的研究表明,o -链聚糖的唾液酰化在巨噬细胞半乳糖凝集素(MGL)介导的清除中起保护作用。除了对血清半衰期的影响外,唾液酰化还可以影响其他临床结果,包括免疫原性、效力和细胞毒性。因此,唾液酸水平是一个关键的质量属性(CQA),监测和调节唾液化已成为一项监管要求,以确保理想的临床表现。为了达到一致水平的唾液酸与蛋白质的比例,上游收获的时间和下游洗涤缓冲液的导电性必须根据唾液酸含量严格调节。因此,利用过程分析技术(PAT)工具生成实时或近实时唾液酸含量是一项关键业务需求。这项工作证明了近实时在线唾液酸测量的集成PAT系统的实用性。该系统由微序进样分析仪(µSIA)与SegFlow接口和超高效液相色谱(UPLC)组成。全自动的体系结构体现了在线采样、自动样品制备和随后的在线UPLC分析的执行。这个精心策划的PAT框架有效地支持qbd驱动的连续生物处理的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Integrated SegFlow, µSIA, and UPLC for Online Sialic Acid Quantitation of Glycoproteins Directly from Bioreactors

Integrated SegFlow, µSIA, and UPLC for Online Sialic Acid Quantitation of Glycoproteins Directly from Bioreactors

This study emphasizes the critical importance of closely monitoring and controlling the sialic acid content in therapeutic glycoproteins, including EPO, interferon-γ, Orencia, Enbrel, and others, as the level of sialylation directly impacts their pharmacokinetics (PK), immunogenicity, potency, and overall clinical performance due to its influence on protein clearance via hepatic asialoglycoprotein receptors (ASGPR). The ASGPR recognizes and binds to glycoproteins exposed to terminal galactose or N-acetylgalactosamine residues, leading to receptor-mediated endocytosis. Recent studies have demonstrated that sialylation of O-linked glycan plays a role in protecting against macrophage galactose lectin (MGL)-mediated clearance. In addition to the impact on serum half-life, sialylation can influence other clinical outcomes, including immunogenicity, potency, and cytotoxicity. Therefore, the level of sialic acid is a critical quality attribute (CQA), and monitoring and regulating sialylation has become a regulatory requirement to ensure desired clinical performance. To achieve consistent levels of sialic acid-to-protein ratio, the time of upstream harvest and conductivity of downstream wash buffers must be tightly regulated based on the sialic acid content. Therefore, the utilization of process analytical technology (PAT) tools for generating real-time or near-real-time sialic acid content is a business-critical requirement. This work demonstrates the utility of an integrated PAT system for near real-time online sialic acid measurements. The system consists of a micro-sequential injection analyzer (µSIA) interfaced with SegFlow and an ultra performance liquid chromatography (UPLC). The fully automated architecture exemplifies the execution of online sampling, automatic sample preparation, and subsequent online UPLC analysis. This carefully orchestrated PAT framework effectively supports the requirements of QbD-driven continuous bioprocessing.

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来源期刊
Engineering in Life Sciences
Engineering in Life Sciences 工程技术-生物工程与应用微生物
CiteScore
6.40
自引率
3.70%
发文量
81
审稿时长
3 months
期刊介绍: Engineering in Life Sciences (ELS) focuses on engineering principles and innovations in life sciences and biotechnology. Life sciences and biotechnology covered in ELS encompass the use of biomolecules (e.g. proteins/enzymes), cells (microbial, plant and mammalian origins) and biomaterials for biosynthesis, biotransformation, cell-based treatment and bio-based solutions in industrial and pharmaceutical biotechnologies as well as in biomedicine. ELS especially aims to promote interdisciplinary collaborations among biologists, biotechnologists and engineers for quantitative understanding and holistic engineering (design-built-test) of biological parts and processes in the different application areas.
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