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Development of advanced host cell protein enrichment and detection strategies to enable process relevant spike challenge studies

机译:开发先进的宿主细胞蛋白质富集和检测策略,以实现过程相关的突波挑战研究

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An orthogonal chromatography methodology for the enrichment of host cell protein (HCP) species relative to monoclonal antibody (mAb) products was developed and applied for the successful enrichment of HCP from post-Protein A process pools for seven different mAb products. An advanced two-dimensional liquid chromatography/mass spectrometry platform (2D-LC/MSE) was utilized to demonstrate that the HCP enriched material was representative, in terms of species content, to pre-enriched process pools. The HCP enrichment methodology was scaled up for two different mAb products, and this process relevant enriched HCP material was used to conduct advanced spike challenge studies to demonstrate the utility of the approach for the understanding of (1) quantitative HCP clearance, (2) individual species clearance, and (3) species clearance redundancy across polishing chromatography steps. The combined ability to enrich process relevant HCP, detect individual HCP species with 2D-LC/MSE technology, and conduct advanced challenge studies with process relevant material surmounts prior limitations to high integrity process challenge study implementation, and facilitates significant process understanding for development of risk-based control strategies and strategic process design. This also demonstrates implementation of a foundational strategy for conducting spike-challenge studies using process-relevant impurities isolated from processes of interest using orthogonal approaches. (c) 2015 American Institute of Chemical Engineers Biotechnol. Prog., 31:983-989, 2015
机译:开发了一种相对于单克隆抗体(mAb)产物富集宿主细胞蛋白(HCP)物种的正交色谱方法,并将其用于从蛋白A后处理库中成功富集HCP的七个不同mAb产物。利用先进的二维液相色谱/质谱平台(2D-LC / MSE)来证明,富含HCP的物质在物种含量方面代表了预富集的处理池。 HCP富集方法学针对两种不同的mAb产品进行了放大,该过程中相关的富集HCP材料用于进行高级加标挑战研究,以证明该方法可用于理解(1)定量HCP清除,(2)个人物种清除,以及(3)整个抛光色谱步骤中的物种清除冗余。丰富的能力结合了过程相关的HCP,使用2D-LC / MSE技术检测单个HCP物种以及进行与过程相关的材料的高级挑战研究,超越了对高完整性过程挑战研究实施的先前限制,并有助于对风险发展的重要过程理解基于控制策略和战略流程设计。这也证明了使用正交方法从目标工艺中分离出的与工艺相关的杂质进行尖峰-挑战研究的基本策略的实施。 (c)2015美国化学工程师学会生物技术学会。 Prog。,31:983-989,2015

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