CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Preclinical studies show that Co-STARs combine the advantages of chimeric antigen and T cell receptors for the treatment of tumors with low antigen densities.
Preclinical studies show that Co-STARs combine the advantages of chimeric antigen and T cell receptors for the treatment of tumors with low antigen densities.
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两种类型的工程化T细胞已成功用于治疗癌症患者,一种具有来源于抗体的抗原识别结构域[嵌合抗原受体(CAR)],另一种来源于T细胞受体(TCR)。CAR使用高亲和力的抗原结合结构域和共刺激结构域来诱导T细胞活化,但只能针对具有相对较高抗原量的靶细胞发生反应。TCR对其抗原的亲和力要低得多,但可以针对仅展示少量抗原分子的靶细胞发生反应。
在此,我们描述了一种新型受体,称为Co-STAR(即共刺激合成TCR和抗原受体),它结合了CAR和TCR的某些方面。在Co-STAR中,TCR的抗原识别组分被高亲和力抗体片段所取代,共刺激由两个驱动NF-κB信号传导的模块(MyD88和CD40)提供。使用一种靶向由常见人类白细胞抗原(HLA)等位基因呈递的复发性p53新抗原的TCR模拟抗体片段,我们证明,在体外,装备Co-STAR的T细胞比用常规CAR和患者来源TCR工程化的T细胞能更好地杀伤携带低密度抗原的癌细胞。在小鼠模型中,我们表明,与同样用MyD88和CD40共刺激修饰的TCR相比,Co-STAR介导更强劲的T细胞扩增和更持久的肿瘤消退。
我们的数据表明,Co-STAR可能对癌症中的其他肽-HLA抗原以及其他抗原密度可能限制工程化T细胞疗效的靶点具有应用价值。
Two types of engineered T cells have been successfully used to treat patients with cancer, one with an antigen recognition domain derived from antibodies [chimeric antigen receptors (CARs)] and the other derived from T cell receptors (TCRs). CARs use high-affinity antigen-binding domains and costimulatory domains to induce T cell activation but can only react against target cells with relatively high amounts of antigen. TCRs have a much lower affinity for their antigens but can react against target cells displaying only a few antigen molecules.
Here, we describe a new type of receptor, called a Co-STAR (for costimulatory synthetic TCR and antigen receptor), that combines aspects of both CARs and TCRs. In Co-STARs, the antigen-recognizing components of TCRs are replaced by high-affinity antibody fragments, and costimulation is provided by two modules that drive NF-κB signaling (MyD88 and CD40).
Using a TCR-mimic antibody fragment that targets a recurrent p53 neoantigen presented in a common human leukocyte antigen (HLA) allele, we demonstrate that T cells equipped with Co-STARs can kill cancer cells bearing low densities of antigen better than T cells engineered with conventional CARs and patient-derived TCRs in vitro. In mouse models, we show that Co-STARs mediate more robust T cell expansion and more durable tumor regressions than TCRs similarly modified with MyD88 and CD40 costimulation.
Our data suggest that Co-STARs may have utility for other peptide-HLA antigens in cancer and other targets where antigen density may limit the efficacy of engineered T cells.
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