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Modeling retrovirus production for gene therapy. 2. integrated optimization of bioreaction and downstream processing

机译:模拟逆转录病毒生产以进行基因治疗。 2.生物反应和下游工艺的综合优化

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In this work a model envisaging the integrated optimization of bioreaction and downstream processing is presented. This model extends the wotk presented in part 1 of this pair of papers by adding ultrafiltration to process optimization. The new operational parameters include ultrafiltration time, pressure, and stirring rate. For global optimization, the model uses as constraints the final product titer and quality to be achieved after downstream processing. This extended model was validated with the same system used in part 1, i. e., PA317 cells producing a recombinant retrovirus containing the LacZ gene as a marker in stirred tanks using porous supports. Optimization of the extended model led to the conclusion that bioreaction should have two steps, batch and perfusion, similar to what was found in part 1. Ultrafiltration in a stirred cell should be performed at low pressures and stirring rates to reduce the losses of infective retroviruses. Sensitivity analysis performed on the results of the integrated optimization showed that under optimal conditions the productivity is less sensitive to the parameters related to ultrafiltration than to those associated with bioreaction. These results were interpreted as reflecting the high yield of utrafiltration (90%). The relevance of the model extension to perform integrated optimization was also demonstrated since a restriction in the specific ultrafiltration area in downstream processing conditioned perfusion duration and perfusion rate in bioreaction. This clearyl indicates that overall process optimization cannot be achieved without integrated optimization.
机译:在这项工作中,提出了一个模型,该模型设想了生物反应和下游处理的综合优化。该模型通过在过程优化中添加超滤来扩展这对论文的第1部分中介绍的wotk。新的操作参数包括超滤时间,压力和搅拌速度。对于全局优化,该模型将最终产品的效价和下游加工后要达到的质量作为约束条件。该扩展模型已使用第1部分中使用的相同系统进行了验证。例如,PA317细胞在多孔罐中搅拌罐中产生包含LacZ基因作为标记的重组逆转录病毒。扩展模型的优化得出的结论是,生物反应应分两步进行,即分批和灌注,这与第1部分中的相似。应在低压和搅拌速率下在搅拌池中进行超滤,以减少感染性逆转录病毒的损失。 。对综合优化结果进行的敏感性分析表明,在最佳条件下,生产率对与超滤相关的参数的敏感性低于对与生物反应相关的参数的敏感性。这些结果被解释为反映了超滤的高产率(90%)。还证明了模型扩展与执行集成优化的相关性,因为下游处理中特定超滤区域的限制条件是生物反应中的灌注持续时间和灌注速率。该clearyl表示没有集成优化就无法实现整个过程的优化。

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