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Application of response surface methodology to maximize the productivity of scalable automated human embryonic stem cell manufacture

机译:响应曲面方法学的应用可最大程度地提高可扩展的人类胚胎干细胞制造的生产率

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摘要

Aim: Commercial regenerative medicine will require large quantities of clinical-specification human cells. The cost and quality of manufacture is notoriously difficult to control due to highly complex processes with poorly defined tolerances. As a step to overcome this, we aimed to demonstrate the use of 'quality-by-design' tools to define the operating space for economic passage of a scalable human embryonic stem cell production method with minimal cell loss. Materials & methods: Design of experiments response surface methodology was applied to generate empirical models to predict optimal operating conditions for a unit of manufacture of a previously developed automatable and scalable human embryonic stem cell production method. Results & conclusion: Two models were defined to predict cell yield and cell recovery rate postpassage, in terms of the predictor variables of media volume, cell seeding density, media exchange and length of passage. Predicted operating conditions for maximized productivity were successfully validated. Such 'quality-by-design type approaches to process design and optimization will be essential to reduce the risk of product failure and patient harm, and to build regulatory confidence in cell therapy manufacturing processes.
机译:目的:商业再生医学将需要大量临床规范的人类细胞。众所周知,由于成本高,工艺复杂,公差定义不清,制造成本和质量难以控制。作为克服此问题的步骤,我们旨在演示“按设计质量”工具的使用,以定义可扩展的人类胚胎干细胞生产方法经济通过的操作空间,并使细胞损失降至最低。材料与方法:采用实验设计的响应面方法来生成经验模型,以预测先前开发的可自动化且可扩展的人类胚胎干细胞生产方法的制造单位的最佳操作条件。结果与结论:根据培养基体积,细胞接种密度,培养基交换和传代时间的预测变量,定义了两个模型来预测传代后的细胞产量和细胞恢复率。成功验证了用于最大生产率的预测运行条件。这种“按设计质量确定”类型的过程设​​计和优化方法对于降低产品故障和患者伤害的风险以及建立对细胞疗法生产过程的监管信心至关重要。

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