← 返回

针对 TCR-T 细胞治疗优化的封闭式自体生物工艺

英文原题:A closed, autologous bioprocess optimized for TCR-T cell therapies.

查看英文原题

A closed, autologous bioprocess optimized for TCR-T cell therapies.

PubMed 2023/04/07(内容时间) Biotechnol Bioeng Q2 · IF 3.9(JCR 2025)

分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。

中文摘要

自体细胞疗法已有效治疗血液系统恶性肿瘤,实体瘤细胞疗法也渐趋成熟,但制造成本高、流程复杂仍是挑战。常规开放式步骤中细胞和试剂在单元操作间转移,降低效率并增加人为错误风险。本文描述一种全封闭自体生物工艺,用于制备工程化TCR-T细胞。该工艺在7至10天内、低感染复数转导条件下,可获得50亿至120亿个表达TCR的T细胞,且细胞富集记忆表型、代谢适能增强。无需富集T细胞或PBMC,即可在生物反应器内激活、转导和扩增白细胞单采细胞,最终T细胞纯度约97%。研究考察了多个关键工艺参数,包括高密度培养(700万细胞/mL)、不同规模阶段摇摆混合调整、加入2-脱氧-D-葡萄糖降低糖酵解及调节IL-2水平,评估其对转导效率、细胞生长和T细胞适能(记忆表型及抵抗活化诱导死亡)的影响。该工艺支持扩展生产,并可在C级洁净室内并行处理多名患者批次。

展开英文摘要原文

Autologous cell therapy has proven to be an effective treatment for hematological malignancies. Cell therapies for solid tumors are on the horizon, however the high cost and complexity of manufacturing these therapies remain a challenge. Routinely used open steps to transfer cells and reagents through unit operations further burden the workflow reducing efficiency and increasing the chance for human error.

Here we describe a fully closed, autologous bioprocess generating engineered TCR-T cells. This bioprocess yielded 5-12 10e9 TCR-expressing T cells, transduced at low multiplicity of infections, within 7-10 days, and cells exhibited an enriched memory T-cell phenotype and enhanced metabolic fitness. It was demonstrated that activating, transducing, and expanding leukapheresed cells in a bioreactor without any T-cell or peripheral blood mononuclear cell enrichment steps had a high level of T-cell purity (~97%).

Several critical process parameters of the bioreactor, including culturing at a high cell density (7e6 cells/mL), adjusting rocking agitations during phases of scale-up, lowering glycolysis through the addition of 2-deoxy- d-glucose, and modulating interleukin-2 levels, were investigated on their roles in regulating transduction efficiency, cell growth, and T-cell fitness such as T-cell memory phenotype and resistance to activation-induced cell death.

The bioprocess described herein supports scale-out feasibility by enabling the processing of multiple patients' batches in parallel within a Grade C cleanroom.

论文信息

作者
Liu Y、Zah E、Arbelaez C、Kim H、Gros E、Buck R、Cox K、Kim S
单位
Amgen, Process Development, Thousand Oaks, California, USA.United States
文献类型
非美国政府资助研究
期刊
Biotechnology and bioengineering2023 Jul
原文标识
PubMed 37027315 · DOI 10.1002/bit.28389