下一代基于抗体的癌症治疗:抗体-药物偶联物和双特异性抗体在血液系统恶性肿瘤和实体瘤中的应用
Next-generation antibody-based therapeutics in cancer: antibody-drug conjugates bispecific antibodies across hematologic malignancies and solid tumors
肿瘤学的治疗范式正在经历由抗体药物偶联物(ADC)和双特异性抗体(bsAb)驱动的深刻变革。
英文原题:Human iPSC-derived preclinical models to identify toxicity of tumor-specific T cells with clinical potential.
我们展示了hiPSC衍生模型在确定肿瘤特异性T细胞毒性风险方面的优势。
T 细胞疗法的安全性与有效性之间的平衡仍然具有挑战性,并且已经发生了 T 细胞介导的毒性。严格选择肿瘤特异性靶点,并通过 T 细胞毒性筛选仔细选择肿瘤特异性 T 细胞,是至关重要的。针对重要器官或特定细胞亚群的体外筛选方案最好能纳入临床前流程,但可选方案仍然有限。在此,我们建立了由人类诱导多能干细胞(hiPSC)衍生的心肌细胞、心外膜细胞和肾脏类器官组成的临床前模型,以更全面地研究肿瘤特异性 T 细胞的毒性风险。研究纳入了针对 PRAME、HA-1H、CD20 或 WT1 反应性的 CD8+T 细胞,这些目前已被使用或计划用于 I/II 期临床研究。利用这些 hiPSC 衍生的临床前模型,我们证明 WT1 特异性 T 细胞引起了与靶基因表达相关的靶向毒性。多种 T 细胞反应性指标在 T 细胞和 hiPSC 衍生靶细胞水平上均证实了这种毒性。此外,表型分析展示了浸润 T 细胞与肾脏类器官之间的相互作用和串扰。总之,我们证明了 hiPSC 衍生模型在确定肿瘤特异性 T 细胞毒性风险方面的益处。此外,我们的数据强调了在常用细胞因子水平之外,其他 T 细胞反应性指标的附加价值。
The balance between safety and efficacy of T cell therapies remains challenging and T cell mediated toxicities have occurred. The stringent selection of tumor-specific targets and careful selection of tumor-specific T cells using T cell toxicity screenings are essential. In vitro screening options against vital organs or specialized cell subsets would be preferably included in preclinical pipelines, but options remain limited. Here, we set up preclinical models with human induced pluripotent stem cell (hiPSC)-derived cardiomyocytes, epicardial cells, and kidney organoids to investigate toxicity risks of tumor-specific T cells more thoroughly. CD8+T cells reactive against PRAME, HA-1H, CD20, or WT1, currently used or planned to be used in phase I/II clinical studies, were included. Using these hiPSC-derived preclinical models, we demonstrated that WT1-specific T cells caused on-target toxicity that correlated with target gene expression. Multiple measures of T cell reactivity demonstrated this toxicity on the level of T cells and hiPSC-derived target cells. In addition, phenotypic analysis illustrated interaction and crosstalk between infiltrated T cells and kidney organoids. In summary, we demonstrated the benefit of hiPSC-derived models in determining toxicity risks of tumor-specific T cells. Furthermore, our data emphasizes the additional value of other measures of T cell reactivity on top of the commonly used cytokine levels.
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