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双重靶向肿瘤代谢组和应激抗原影响工程化 T 细胞的转录组异质性和疗效

英文原题:Dual targeting of cancer metabolome and stress antigens affects transcriptomic heterogeneity and efficacy of engineered T cells.

PubMed 2023/11/27(内容时间) Nat Immunol Q1 · IF 26.5(JCR 2025)

研究概要

少数癌症可以通过工程化T细胞策略有效靶向。

中文摘要

少数癌症可以通过工程化T细胞策略被有效靶向。在此,我们表明,γδ T细胞抗原受体(γδ TCR)介导的癌症代谢组靶向可以通过添加嵌合共受体与癌症相关应激抗原(如NKG2D配体或CD277)的靶向相结合。该策略克服了表达特定γδ TCR的αβ T细胞(TEGs)中γ9δ2 TCR结合不理想的问题,并改善了TEGs的连续杀伤、增殖和持久性。在体内,NKG2D-CD28 WT嵌合体仅能控制液体肿瘤,而NKG2D-4-1BB CD28TM嵌合体延长了TEGs的持久性并改善了对液体和实体肿瘤的控制。靶向CD277的嵌合体(103-4-1BB)是最优的共刺激形式,可根除液体和实体肿瘤。单细胞转录组分析显示,NKG2D-4-1BB CD28TM和103-4-1BB嵌合体通过NF-κB重编程TEGs。由于与CD8+ TEGs中天然表达的NKG2D竞争,NKG2D-4-1BB CD28TM嵌合体主要使CD4+ TEGs向黏附、增殖、细胞毒性和较少耗竭特征倾斜,而103-4-1BB嵌合体还额外将CD8+亚群塑造为增殖状态。

展开英文摘要原文

Few cancers can be targeted efficiently by engineered T cell strategies. Here, we show that γδ T cell antigen receptor (γδ TCR)-mediated cancer metabolome targeting can be combined with targeting of cancer-associated stress antigens (such as NKG2D ligands or CD277) through the addition of chimeric co-receptors. This strategy overcomes suboptimal γ9δ2 TCR engagement of αβ T cells engineered to express a defined γδ TCR (TEGs) and improves serial killing, proliferation and persistence of TEGs. In vivo, the NKG2D-CD28 WT chimera enabled control only of liquid tumors, whereas the NKG2D-4-1BB CD28TM chimera prolonged persistence of TEGs and improved control of liquid and solid tumors. The CD277-targeting chimera (103-4-1BB) was the most optimal co-stimulation format, eradicating both liquid and solid tumors. Single-cell transcriptomic analysis revealed that NKG2D-4-1BB CD28TM and 103-4-1BB chimeras reprogram TEGs through NF-κB. Owing to competition with naturally expressed NKG2D in CD8 + TEGs, the NKG2D-4-1BB CD28TM chimera mainly skewed CD4 + TEGs toward adhesion, proliferation, cytotoxicity and less exhausted signatures, whereas the 103-4-1BB chimera additionally shaped the CD8 + subset toward a proliferative state.

论文信息

作者
Hernández-López P、van Diest E、Brazda P、Heijhuurs S、Meringa A、Hoorens van Heyningen L、Riillo C、Schwenzel C
第一作者单位
Center for Translational Immunology, University Medical Center Utrecht, Utrecht University, Utrecht, the Netherlands.Netherlands
通讯作者单位
Center for Translational Immunology, University Medical Center Utrecht, Utrecht University, Utrecht, the Netherlands. j.h.e.kuball@umcutrecht.nl.Netherlands
期刊
Nature immunology2024 Jan
原文标识
PubMed 38012415 · DOI 10.1038/s41590-023-01665-0