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Host Cell Protein Clearance During Protein A Chromatography: Development of an Improved Column Wash Step

机译:蛋白A色谱过程中宿主细胞蛋白清除:改进的色谱柱清洗步骤的发展

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Host cell protein (HCP) contaminant clearance is a significant concern during downstream process development for biopharmaceuticals. Protein A chromatography as a capture step for monoclonal antibodies and Fc fusion proteins can clear a large proportion of these impurities from cell culture harvest. Nevertheless, remaining levels of this process-related impurity class do present significant constraints on the rapid development of effective and robust polishing steps. Conventionally, an intermediate pH wash is employed between column loading and elution to minimize HCP levels after Protein A chromatography. A significant mechanistic finding presented in this work is that HCP contaminants that persist following Protein A capture predominantly comprise species that associate with the product in preference to direct interaction with the chromatographic resin. This suggests that the development of improved column wash techniques to maximize HCP clearance ought to focus on disrupting protein-HCP interactions rather than Protein A-HCP interactions. A higher wash pH to preserve product - Protein A binding along with the use of additive combinations to disrupt interactions between HCPs and the product are investigated. This strategy was successfully applied to develop a broadly applicable wash condition that has the potential for eliminating the need for product specific optimization of wash conditions. A combination of 1 M urea and 10% isopropanol in the wash buffer were successfully applied as a platform wash condition for Protein A chromatography. Use of this (and other similar) wash conditions are anticipated to aid the rapid development of effective downstream processes for monoclonal antibodies and Fc fusion proteins resulting in their rapid introduction into clinical trials.
机译:在生物制药的下游工艺开发过程中,宿主细胞蛋白(HCP)污染物清除是一个重要的问题。蛋白A色谱作为单克隆抗体和Fc融合蛋白的捕获步骤,可以从细胞培养物收获物中清除大部分这些杂质。然而,与工艺相关的杂质类别的剩余水平确实对有效和稳健的抛光步骤的快速发展提出了明显的限制。通常,在色谱柱上样和洗脱之间使用中间pH洗涤,以使蛋白A层析后的HCP水平降至最低。这项工作中提出的一项重要的机械发现是,在捕获蛋白A之后仍持续存在的HCP污染物主要包括与产品相关的物质,优先于与色谱树脂的直接相互作用。这表明改进的柱洗技术以最大化HCP清除率的发展应该集中在破坏蛋白质-HCP相互作用而不是蛋白质A-HCP相互作用上。研究了较高的洗涤pH值以保持产物-蛋白A的结合以及使用添加剂组合破坏HCP与产物之间的相互作用。该策略已成功应用于开发广泛适用的洗涤条件,从而有可能消除对洗涤条件的产品特定优化的需求。将洗涤缓冲液中1 M尿素和10%异丙醇的组合成功用作蛋白质A色谱的平台洗涤条件。预期使用这种(和其他类似的)洗涤条件将有助于单克隆抗体和Fc融合蛋白有效下游工艺的快速发展,从而将其快速引入临床试验。

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