CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:CTLA-4 tail fusion enhances CAR-T anti-tumor immunity.
CTLA-4 tail fusion enhances CAR-T anti-tumor immunity.
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CAR-T 疗效常受关键障碍限制。本研究利用CTLA-4胞质尾部(CT)的内吞特性重新设计CAR功能,并显著增强体内疗效。将单体、双联或三联CTLA-4 CT融合于CAR羧基端后,反复刺激下细胞毒性逐步增强,同时活化和促炎细胞因子产生减少。进一步研究显示,CT融合越多,CAR稳态表面表达越低,这是持续内吞、循环和降解所致。该改造降低CAR介导的膜片段转移和肿瘤抗原丢失,并改善CAR-T 存活。单体或双联CT融合CAR在复发白血病模型中抗肿瘤效果更佳。单细胞测序和流式结果显示,双联CT CAR-T 保留更强的中央记忆表型并具有更好持续性。这一合成CT融合策略为改善CAR-T 功能提供了不同于其他细胞工程技术的新途径。
Chimeric antigen receptor (CAR) T cells are powerful therapeutics; however, their efficacy is often hindered by critical hurdles.
Here, utilizing the endocytic feature of the cytotoxic T-lymphocyte-associated antigen-4 (CTLA-4) cytoplasmic tail (CT), we reprogram CAR function and substantially enhance CAR-T efficacy in vivo . CAR-T cells with monomeric, duplex, or triplex CTLA-4 CTs (CCTs) fused to the C-terminus of CAR exhibit a progressive increase in cytotoxicity under repeated stimulation, accompanied by reduced activation and production of pro-inflammatory cytokines.
Further characterization reveals that CARs with increasing CCT fusion show a progressively lower surface expression, regulated by their constant endocytosis, recycling and degradation under steady state. The molecular dynamics of reengineered CAR with CCT fusion results in reduced CAR-mediated trogocytosis, loss of tumor antigen, and improved CAR-T survival.
CARs with either monomeric (CAR-1CCT) or duplex CCTs (CAR-2CCT) have superior anti-tumor efficacy in a relapsed leukemia model. Single-cell RNA sequencing and flow cytometry analysis reveal that CAR-2CCT cells retain a stronger central memory phenotype and exhibit increased persistence.
These findings illuminate a unique strategy for engineering therapeutic T cells and improving CAR-T function through synthetic CCT fusion, which is orthogonal to other cell engineering techniques.
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