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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Multiparameter Longitudinal Imaging of Immune Cell Activity in Chimeric Antigen Receptor T Cell and Checkpoint Blockade Therapies.
Multiparameter Longitudinal Imaging of Immune Cell Activity in Chimeric Antigen Receptor T Cell and Checkpoint Blockade Therapies.
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纵向多模态成像为无创监测癌症免疫治疗和预测治疗反应提供了独特机会。本研究首先设计了一种新型颗粒酶 B 激活型自组装小分子 G-SNAT,用于评估细胞毒性 T 淋巴细胞介导的癌细胞杀伤。研究发现,G-SNAT 可特异性检测活化 T 细胞细胞毒颗粒中的颗粒酶 B 活性,并在体外与癌细胞结合。在淋巴瘤荷瘤小鼠中,花青素 5 标记的 G-SNAT-Cy5 的滞留与 CAR-T 细胞介导的颗粒酶 B 胞吐及肿瘤清除相关。在造血细胞表达萤火虫荧光素酶的结直肠肿瘤转基因小鼠中,纵向生物发光和荧光成像显示,抗 PD-1 与抗 CTLA-4 联合治疗后,免疫细胞迁移、肿瘤浸润和细胞毒活性的动态变化可在肿瘤明显缩小前预测治疗结局。这些结果支持进一步开发 G-SNAT,用于患者免疫检查点阻断和 CAR-T 细胞治疗早期免疫反应成像,并凸显多模态成像有助于深入理解癌症免疫治疗机制。
Longitudinal multimodal imaging presents unique opportunities for noninvasive surveillance and prediction of treatment response to cancer immunotherapy. In this work we first designed a novel granzyme B activated self-assembly small molecule, G-SNAT, for the assessment of cytotoxic T lymphocyte mediated cancer cell killing. G-SNAT was found to specifically detect the activity of granzyme B within the cytotoxic granules of activated T cells and engaged cancer cells in vitro . In lymphoma tumor-bearing mice, the retention of cyanine 5 labeled G-SNAT-Cy5 correlated to CAR T cell mediated granzyme B exocytosis and tumor eradication.
In colorectal tumor-bearing transgenic mice with hematopoietic cells expressing firefly luciferase, longitudinal bioluminescence and fluorescence imaging revealed that after combination treatment of anti-PD-1 and anti-CTLA-4, the dynamics of immune cell trafficking, tumor infiltration, and cytotoxic activity predicted the therapeutic outcome before tumor shrinkage was evident.
These results support further development of G-SNAT for imaging early immune response to checkpoint blockade and CAR T-cell therapy in patients and highlight the utility of multimodality imaging for improved mechanistic insights into cancer immunotherapy.
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