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:Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications.
Engineering CAR-T cells for radiohapten capture in imaging and radioimmunotherapy applications.
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在此,我们改造了 CD19 CAR-T 细胞(“Thor”细胞),使其表达一种膜结合 scFv,huC825,该分子以皮摩尔亲和力结合 DOTA-半抗原,适合用成像或治疗性放射性核素进行标记。我们在淋巴瘤模型中使用 Thor 细胞,评估其在通过 PET 进行连续追踪研究中的多用途性,以及在次优过继细胞转移体内递送 α-放射性核素以增强抗肿瘤杀伤效力方面的用途。
我们表明,这种报告基因/探针平台能够利用 PET/CT 成像以极高对比度对输注的 Thor 细胞进行重复、灵敏且特异性的全身评估。PET 上的摄取在细胞和功能水平上与 Thor 细胞相关。此外,我们报告了 Thor 细胞能够在肿瘤部位优先蓄积具有细胞毒性的 α 发射放射性核素,从而提高治疗效力。
Thor 细胞是一种新的诊疗一体化制剂,可能为更优且更安全的过继 T 细胞治疗临床方案以及加速开发策略提供关键信息。
Rationale: The in vivo dynamics of CAR-T cells remain incompletely understood. Novel methods are urgently needed to longitudinally monitor transferred cells non-invasively for biodistribution, functionality, proliferation, and persistence in vivo and for improving their cytotoxic potency in case of treatment failure. Methods: Here we engineered CD19 CAR-T cells ("Thor"-cells) to express a membrane-bound scFv, huC825, that binds DOTA-haptens with picomolar affinity suitable for labeling with imaging or therapeutic radionuclides.
We assess its versatile utility for serial tracking studies with PET and delivery of -radionuclides to enhance anti-tumor killing efficacy in sub-optimal adoptive cell transfer in vivo using Thor-cells in lymphoma models. Results: We show that this reporter gene/probe platform enables repeated, sensitive, and specific assessment of the infused Thor-cells in the whole-body using PET/CT imaging with exceptionally high contrast. The uptake on PET correlates with the Thor-cells on a cellular and functional level.
Furthermore, we report the ability of Thor-cells to accumulate cytotoxic alpha-emitting radionuclides preferentially at tumor sites, thus increasing therapeutic potency. Conclusion: Thor-cells are a new theranostic agent that may provide crucial information for better and safer clinical protocols of adoptive T cell therapies, as well as accelerated development strategies.
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