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Determination of Robustness and Optimal Work Conditions for a Purification Process of a Therapeutic Recombinant Protein Using Response Surface Methodology

机译:使用响应面法确定治疗性重组蛋白纯化过程的稳健性和最佳工作条件

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A typical chromatographic purification step has numerous operating parameters that can impact its performance. As it is not feasible to evaluate the influence of each one, the current practice in biopharmaceutical industry is to apply risk analysis approach to identify process parameters that should be examined during process characterization. Once these parameters are identified, a response surface study can be run to help understand the relationship between critical inputs and outputs. We performed a study comprising optimization and robustness determination for a Blue-Sepharose purification step of rhEPO, a well-known therapeutic glycoprotein. Initially, risk analysis was fulfilled to identify key parameters. A small-scale model was created and qualified before its use in experimental studies, given by a Box-Behnken design with three factors. This method proved to be a very useful tool in bioprocess validation studies in which many input variables can affect product quality and safety.
机译:典型的色谱纯化步骤具有许多可能影响其性能的操作参数。由于评估每个因素的影响是不可行的,因此生物制药行业的当前实践是应用风险分析方法来确定在过程表征期间应检查的过程参数。一旦确定了这些参数,就可以进行响应面研究以帮助理解关键输入和输出之间的关系。我们进行了一项研究,其中包括对众所周知的治疗性糖蛋白rhEPO的蓝琼脂糖纯化步骤的优化和稳健性确定。最初,进行了风险分析以识别关键参数。由Box-Behnken设计根据三个因素得出的结果是,在实验研究中使用之前,已创建并验证了小型模型。该方法被证明是生物过程验证研究中非常有用的工具,其中许多输入变量会影响产品质量和安全性。

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