Enabling Allogeneic T Cell-Based Therapies: Scalable Stirred-Tank Bioreactor Mediated Manufacturing

IF 2.7 Q3 ENGINEERING, BIOMEDICAL
H. Gatla, N. Uth, Y. Levinson, A. Navaei, A. Sargent, S. Ramaswamy, Inbar Friedrich Ben-Nun
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引用次数: 1

Abstract

Allogeneic T cells are key immune therapeutic cells to fight cancer and other clinical indications. High T cell dose per patient and increasing patient numbers result in clinical demand for a large number of allogeneic T cells. This necessitates a manufacturing platform that can be scaled up while retaining cell quality. Here we present a closed and scalable platform for T cell manufacturing to meet clinical demand. Upstream manufacturing steps of T cell activation and expansion are done in-vessel, in a stirred-tank bioreactor. T cell selection, which is necessary for CAR-T-based therapy, is done in the bioreactor itself, thus maintaining optimal culture conditions through the selection step. Platform's attributes of automation and performing the steps of T cell activation, expansion, and selection in-vessel, greatly contribute to enhancing process control, cell quality, and to the reduction of manual labor and contamination risk. In addition, the viability of integrating a closed, automated, downstream process of cell concentration, is demonstrated. The presented T cell manufacturing platform has scale-up capabilities while preserving key factors of cell quality and process control.
实现基于同种异体T细胞的治疗:可扩展的搅拌槽生物反应器介导的制造
同种异体T细胞是对抗癌症和其他临床适应症的关键免疫治疗细胞。每个患者的高T细胞剂量和患者数量的增加导致临床对大量同种异体T细胞的需求。这就需要一个可以在保持电池质量的同时扩大规模的制造平台。在这里,我们提出了一个封闭的、可扩展的T细胞制造平台,以满足临床需求。T细胞活化和扩增的上游制造步骤是在容器中,在搅拌槽生物反应器中完成的。T细胞的选择是car -based治疗所必需的,在生物反应器中进行,从而在选择步骤中保持最佳培养条件。平台的自动化属性和在容器内完成T细胞活化、扩增和选择的步骤,极大地有助于加强过程控制,提高细胞质量,减少人工劳动和污染风险。此外,整合一个封闭的,自动化的,细胞浓缩的下游过程的可行性,被证明。所提出的T细胞制造平台具有放大能力,同时保留细胞质量和过程控制的关键因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.70
自引率
0.00%
发文量
0
审稿时长
13 weeks
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