生成临床应用 iPSCs 的生物处理注意事项:ISCT 新兴再生医学技术工作组的观点。

IF 3.7 3区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Hannah W Song, Jennifer N Solomon, Fernanda Masri, Amanda Mack, Nisha Durand, Emmanuelle Cameau, Noushin Dianat, Arwen Hunter, Steve Oh, Brianna Schoen, Matthew Marsh, Christopher Bravery, Cenk Sumen, Dominic Clarke, Kapil Bharti, Julie G Allickson, Uma Lakshmipathy
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引用次数: 0

摘要

诱导多能干细胞(iPSCs)经过 20 年的研究和开发,如今正逐渐被批准用于制造细胞疗法,以支持临床试验。2022 年,国际细胞与基因治疗学会(ISCT)成立了新兴再生医学技术工作组,iPSCs 衍生技术有望在该领域发挥关键作用。在这篇文章中,工作组探讨了最终用户在生成稳定、特性良好、多能、适合用于异体或自体细胞疗法的分化细胞类型的 iPSCs 时应考虑的步骤。本书旨在为读者提供一个整体视角,介绍如何从起始材料的选择到细胞库的建立,实现高质量的 iPSCs。主要考虑因素包括(i) 知识产权许可;(ii) 选择用于创建 iPSC 中间体和主细胞库的原材料和细胞来源;(iii) 重编程方法的监管考虑因素;(iv) 在二维与三维培养物中扩增的选择;(v) 用于收获、洗涤、浓缩、填充、冷冻保存和储存的可用技术和设备。重点介绍了一些关键的流程限制,以帮助推动进一步的改进和创新,其中包括关闭当前开放式和人工流程并使其自动化的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioprocessing considerations for generation of iPSCs intended for clinical application: perspectives from the ISCT Emerging Regenerative Medicine Technology working group.

Approval of induced pluripotent stem cells (iPSCs) for the manufacture of cell therapies to support clinical trials is now becoming realized after 20 years of research and development. In 2022 the International Society for Cell and Gene Therapy (ISCT) established a Working Group on Emerging Regenerative Medicine Technologies, an area in which iPSCs-derived technologies are expected to play a key role. In this article, the Working Group surveys the steps that an end user should consider when generating iPSCs that are stable, well-characterised, pluripotent, and suitable for making differentiated cell types for allogeneic or autologous cell therapies. The objective is to provide the reader with a holistic view of how to achieve high-quality iPSCs from selection of the starting material through to cell banking. Key considerations include: (i) intellectual property licenses; (ii) selection of the raw materials and cell sources for creating iPSC intermediates and master cell banks; (iii) regulatory considerations for reprogramming methods; (iv) options for expansion in 2D vs. 3D cultures; and (v) available technologies and equipment for harvesting, washing, concentration, filling, cryopreservation, and storage. Some key process limitations are highlighted to help drive further improvement and innovation, and includes recommendations to close and automate current open and manual processes.

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来源期刊
Cytotherapy
Cytotherapy 医学-生物工程与应用微生物
CiteScore
6.30
自引率
4.40%
发文量
683
审稿时长
49 days
期刊介绍: The journal brings readers the latest developments in the fast moving field of cellular therapy in man. This includes cell therapy for cancer, immune disorders, inherited diseases, tissue repair and regenerative medicine. The journal covers the science, translational development and treatment with variety of cell types including hematopoietic stem cells, immune cells (dendritic cells, NK, cells, T cells, antigen presenting cells) mesenchymal stromal cells, adipose cells, nerve, muscle, vascular and endothelial cells, and induced pluripotential stem cells. We also welcome manuscripts on subcellular derivatives such as exosomes. A specific focus is on translational research that brings cell therapy to the clinic. Cytotherapy publishes original papers, reviews, position papers editorials, commentaries and letters to the editor. We welcome "Protocols in Cytotherapy" bringing standard operating procedure for production specific cell types for clinical use within the reach of the readership.
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