Transition from the manual processes that are performed during the initial research and development (R&D) stage to automated processes for later and commercial stage cell therapy manufacturing can be challenging. It often requires significant effort, time, and costs - which hinders the therapy's access to the clinic. To ease this transition, we have developed a novel and flexible manufacturing platform, Bioreactor with Expandable Culture Area (BECA), that aims to support both R&D and manufacturing to accelerate cell therapies from bench to bedside. This report introduces two models in this manufacturing platform: BECA-S for manual small-scale operation at R&D phase and BECA-Auto for functionally closed and automated scaled-out operation at manufacturing phase. We employed these two models to streamline transition of the T cell culture process from manual to automated and reported insignificant differences in the culture outcome between the two. Our work represents the first detailed development and demonstration of a standalone cell manufacturing platform that facilitates a seamless transition between manual and automated processing for autologous T cell therapy manufacturing.
Transition from manual to automated processes for autologous T cell therapy manufacturing using bioreactor with expandable culture area.
利用可扩展培养面积的生物反应器,实现自体 T 细胞疗法生产的从人工操作到自动化流程的过渡
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作者:Lee Jia Sheng Zach, Prabhu Akshaya V, Wu Ying Ying, Bin Abdul Rahim Ahmad Amirul, Chen Sixun, Naing May Win, Liu Dan
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2025 | 起止号: | 2025 May 6; 15(1):15819 |
| doi: | 10.1038/s41598-025-00015-4 | 研究方向: | 细胞生物学 |
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