PTPN22 作为新型治疗靶点:NK 细胞治疗的关键细胞内检查点
PTPN22 as a novel therapeutic target: a key intracellular checkpoint for NK cell therapy.
这些发现表明 PTPN22 是一个限制 NK 和 CAR-NK 细胞功能的新型细胞内检查点。靶向敲除 PTPN22 是一种有前景的策略,可增强未经修饰和 CAR 工程化 NK 细胞在肿瘤免疫治疗中的疗效和持久性。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Engineering "off-the-shelf" TCR-T cells: A transient mRNA platform for balanced alloreactivity and functionality.
Engineering "off-the-shelf" TCR-T cells: A transient mRNA platform for balanced alloreactivity and functionality.
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本研究为一种可行的多层策略提供了体外概念验证,该策略用于生产异体TCR-T细胞疗法,值得进一步开展临床前验证。
使用T细胞受体(TCR)工程化T(TCR-T)细胞的过继性T细胞治疗在癌症治疗中显示出前景。我们实验室采用mRNA电穿孔技术,将T细胞特异性重定向至HBV相关HCC上表达的HBV抗原,同时利用mRNA的瞬时特性来限制毒性。
在此,我们首先证明,与健康供者相比,来自实体癌患者的外周血单个核细胞(PBMC)是较差的制备来源,表现为可制备性降低和初始T细胞频率较低。由于这些限制使得必须转向来自健康供者的异基因“现货型”TCR-T产品,我们开发了一种非基因编辑平台来生产此类TCR-T细胞。
我们通过将瞬时他克莫司诱导的免疫抑制与免疫抑制药物耐药装甲(IDRA)TCR-T细胞相结合,解决了宿主抗移植物排斥问题。为降低移植物抗宿主病风险,我们使用IL-2/4/7细胞因子混合物优化了制备工艺。所得TCR-T细胞表现出同种反应性降低、NK样表型减少以及IL-4/IL-10分泌升高,同时保持强效的抗原特异性细胞毒性和迁移能力。
本研究为一种可行的多层策略提供了体外概念验证,用于生产异基因TCR-T细胞疗法,值得进一步开展临床前验证。
Adoptive T cell therapy using T cell receptor (TCR)-engineered T (TCR-T) cells shows promise for the treatment of cancer.
Our lab employs mRNA electroporation to redirect T cell specificity toward HBV antigens expressed on HBV-related HCC, while exploiting mRNA's transient nature to limit toxicity.
Here, we first demonstrated that peripheral blood mononuclear cells (PBMCs) from solid cancer patients are inferior manufacturing sources compared with healthy donors, showing reduced manufacturability and lower naive T cell frequencies. Since these limitations necessitate shifting to allogeneic "off-the-shelf" TCR-T products from healthy donors, we developed a non-gene-editing platform to produce such TCR-T cells.
We addressed host-versus-graft rejection by combining transient tacrolimus-induced immunosuppression with immunosuppressive drug-resistant armored (IDRA) TCR-T cells. To reduce the risk of graft-versus-host disease, we optimized manufacturing using an IL-2/4/7 cytokine cocktail. The resulting TCR-T cells exhibited reduced alloreactivity, a less NK-like phenotype, and elevated IL-4/IL-10 secretion, while maintaining robust antigen-specific cytotoxicity and migratory capacity.
This study provides an in vitro proof-of-concept for a feasible, multi-layered strategy to produce allogeneic TCR-T cell therapies, warranting further preclinical validation.
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