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CRISPR-Cas9 工程化人类 T 调节性细胞——制造工艺的设计与优化

英文原题:CRISPR-Cas9 engineering of human T regulatory cells - Design and optimization of a manufacturing process.

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CRISPR-Cas9 engineering of human T regulatory cells - Design and optimization of a manufacturing process.

PubMed 2025/06/04(内容时间) Mol Immunol Q2 · IF 3.7(JCR 2025)

研究概要

调节性T细胞(Tregs)是CD4+ T细胞的一个亚群,占CD4+T细胞总数的5-10%。

中文摘要

调节性T细胞(Tregs)是CD4+ T细胞的一个亚群,占CD4+ T细胞总数的5-10%。Tregs对维持免疫耐受和免疫稳态至关重要,其通过表达转录因子FOXP3而区别于其他CD4+ T细胞亚型。由于其在免疫调节中的核心地位,Tregs作为自身免疫性疾病、移植排斥和移植物抗宿主病(GvHD)临床应用的有前景靶点,已受到越来越多的关注。然而,Tregs在免疫系统复杂网络中的重要作用也暗示其作为其他医学适应症(如神经退行性疾病和癌症)的有前景治疗靶点。我们课题组最近发表的一项研究表明,基因修饰的Tregs能够在多种小鼠模型中清除实体恶性肿瘤,包括侵袭性三阴性乳腺癌(TNBC)和前列腺癌,这为开发使用类固醇受体共激活因子3(SRC-3)敲除(KO)Tregs的过继细胞疗法提供了动力。众所周知,Tregs的分离、基因编辑和扩增为均一且健康的群体面临特定的技术挑战。在此背景下,我们在此概述了生产SRC-3 KO人类Tregs(hTregs)的工艺开发,该工艺随后可适应现行药品生产质量管理规范(cGMP)环境,以促进临床规模生产。

展开英文摘要原文

Regulatory T cells (Tregs) are a subset of CD4 + T cells that comprise 5-10 % of the total CD4 + T cell population. Tregs, which are critically important for the maintenance of immune tolerance and immune homeostasis, are distinguished from other subtypes of CD4 + T cells by the expression of the transcription factor FOXP3. Because of the centrality to immunoregulation, Tregs have gained increasing attention as promising targets for clinical applications in autoimmune diseases, transplant rejection and graft-versus-host disease (GvHD). However, the essential role of Tregs in the complex network of the immune system implies their targeting as a promising therapeutic approach also in other medical indications, such as neurodegenerative diseases and cancer. Our group recently published a study showing that genetically modified Tregs are capable of clearing solid malignancies in various mice models, including an aggressive triple negative breast cancer (TNBC) and prostate cancer, which provides the impetus to develop an adoptive cell therapy using Steroid Receptor Coactivator 3 (SRC-3) knock out (KO) Tregs. It is well known that isolation, genetic editing and the expansion of Tregs as a homogenous and healthy population present specific technical challenges. In this context, here we outline the development of a process for the production of SRC-3 KO human Tregs (hTregs), which can subsequently be adapted for Current Good Manufacturing Practice (cGMP) settings to facilitate clinical-scale production.

论文信息

作者
Shimon O、Dean AM、Cohen S、Moser AL、Dacso CC、Gilad Y、Lonard DM、O'Malley BW
第一作者单位
Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX, United States; CoRegen, Inc., Baylor College of Medicine, Houston, TX, United States.United States
通讯作者单位
Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX, United States; CoRegen, Inc., Baylor College of Medicine, Houston, TX, United States; Nuclear Receptor, Transcription and Chromatin Biology Program, Dan L. Duncan Cancer Center, Baylor College of Medicine, Houston, TX, United States. Electronic address: berto@bcm.edu.United States
文献类型
非美国政府资助研究 · 美国 NIH 资助研究
期刊
Molecular immunology2025 Aug
原文标识
PubMed 40472724 · DOI 10.1016/j.molimm.2025.05.019