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多元数据分析在生物加工应用中识别根本原因并成功解决问题上的应用。

Application of multivariate data analysis for identification and successful resolution of a root cause for a bioprocessing application.

作者信息

Kirdar Alime Ozlem, Green Ken D, Rathore Anurag S

机构信息

Process Development, Amgen Inc, Thousand Oaks, California, USA.

出版信息

Biotechnol Prog. 2008 May-Jun;24(3):720-6. doi: 10.1021/bp0704384. Epub 2008 May 10.

Abstract

Multivariate Data Analysis (MVDA) can be used for supporting key activities required for successful bioprocessing. These activities include process characterization, process scale-up, process monitoring, fault diagnosis and root cause analysis. This paper examines an application of MVDA towards root cause analysis for identifying scale-up differences and parameter interactions that adversely impact cell culture process performance. Multivariate data analysis and modeling were performed using data from small-scale (2 L), pilot-scale (2,000 L) and commercial-scale (15,000 L) batches. The input parameters examined included bioreactor pCO2, glucose, lactate, ammonium, raw materials and seed inocula. The output parameters included product attributes, product titer, viable cell density, cell viability and osmolality. Time course performance variables (daily, initial, peak and end point) were also evaluated. Application of MVDA as a diagnostic tool was successful in identifying the root cause and designing experimental conditions to demonstrate and correct it. Process parameters and their interactions that adversely impact cell culture performance and product attributes were successfully identified. MVDA was successfully used as an effective tool for collating process knowledge and increasing process understanding.

摘要

多变量数据分析(MVDA)可用于支持生物加工成功所需的关键活动。这些活动包括工艺表征、工艺放大、工艺监测、故障诊断和根本原因分析。本文探讨了MVDA在根本原因分析中的应用,以识别对细胞培养工艺性能产生不利影响的放大差异和参数相互作用。使用来自小规模(2升)、中试规模(2000升)和商业规模(15000升)批次的数据进行多变量数据分析和建模。所研究的输入参数包括生物反应器中的二氧化碳分压、葡萄糖、乳酸、铵、原材料和种子接种物。输出参数包括产品属性、产品滴度、活细胞密度、细胞活力和渗透压。还评估了时程性能变量(每日、初始、峰值和终点)。将MVDA用作诊断工具成功地识别了根本原因,并设计了实验条件来证明和纠正该原因。成功识别了对细胞培养性能和产品属性产生不利影响的工艺参数及其相互作用。MVDA成功地用作整理工艺知识和增强工艺理解的有效工具。

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