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用于病毒载体生产的耐储存质粒DNA/PEI转染颗粒的升规模制造。

Liter-scale manufacturing of shelf-stable plasmid DNA/PEI transfection particles for viral vector production.

作者信息

Hu Yizong, Eder Brendan A, Lin Jinghan, Li Sixuan, Zhu Yining, Wang Tza-Huei, Guo Ting, Mao Hai-Quan

机构信息

Institute for NanoBioTechnology, Johns Hopkins University, Baltimore, MD 21218, USA.

Department of Biomedical Engineering, Johns Hopkins University School of Medicine, Baltimore, MD 21218, USA.

出版信息

Mol Ther Methods Clin Dev. 2024 Jan 22;32(1):101194. doi: 10.1016/j.omtm.2024.101194. eCollection 2024 Mar 14.

Abstract

The transfection efficiency and stability of the delivery vehicles of plasmid DNA (pDNA) are critical metrics to ensure high-quality and high-yield production of viral vectors. We previously identified that the optimal size of pDNA/poly(ethylenimine) (PEI) transfection particles is 400-500 nm and developed a bottom-up assembly method to construct stable 400-nm pDNA/PEI particles and benchmarked their transfection efficiency in producing lentiviral vectors (LVVs). Here, we report scale-up production protocols for such transfection particles. Using a two-inlet confined impinging jet (CIJ) mixer with a dual syringe pump set-up, we produced a 1-L batch at a flow rate of 100 mL/min, and further scaled up this process with a larger CIJ mixer and a dual peristaltic pump array, allowing for continuous production at a flow rate of 1 L/min without a lot size limit. We demonstrated the scalability of this process with a 5-L lot and validated the quality of these 400-nm transfection particles against the target product profile, including physical properties, shelf and on-bench stability, transfection efficiency, and LVV production yield in both 15-mL bench culture and 2-L bioreactor runs. These results confirm the potential of this particle assembly process as a scalable manufacturing platform for viral vector production.

摘要

质粒DNA(pDNA)递送载体的转染效率和稳定性是确保病毒载体高质量、高产量生产的关键指标。我们之前确定pDNA/聚乙烯亚胺(PEI)转染颗粒的最佳尺寸为400-500纳米,并开发了一种自下而上的组装方法来构建稳定的400纳米pDNA/PEI颗粒,并对其在生产慢病毒载体(LVV)中的转染效率进行了基准测试。在此,我们报告了此类转染颗粒的放大生产方案。使用配备双注射器泵的双入口受限撞击流(CIJ)混合器,我们以100毫升/分钟的流速生产了1升批次,并用更大的CIJ混合器和双蠕动泵阵列进一步扩大了该过程,实现了1升/分钟流速的连续生产,且无批量限制。我们用5升批次展示了该过程的可扩展性,并根据目标产品特性验证了这些400纳米转染颗粒的质量,包括物理性质、货架期和操作台上的稳定性、转染效率以及在15毫升台式培养和2升生物反应器运行中的LVV生产产量。这些结果证实了这种颗粒组装过程作为病毒载体生产可扩展制造平台的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeda/10863326/00fac347bbfe/fx1.jpg

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