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Genetically engineered T cells bearing chimeric nanoconstructed receptors harboring TAG-72-specific camelid single domain antibodies as targeting agents

机译:归属于嵌合纳米结构受体的基因工程T细胞含有标签-72特异性骆驼形单结构域抗体作为靶向剂

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摘要

Despite the preclinical success of adoptive therapy with T cells bearing chimeric nanoconstructed antigen receptors (CARs), certain limitations of this therapeutic approach such as the immunogenicity of the antigen binding domain, the emergence of tumor cell escape variants and the blocking capacity of soluble antigen still remain. Here, we address these issues using a novel CAR binding moiety based on the oligoclonal camelid single domain antibodies. A unique set of 13 single domain antibodies were selected from an immunized camel phage library based on their target specificity and binding affinity. A combination of these single domain antibodies was used to generate four tumor associated glycoprotein (TAG-72)-specific CARs harboring an identical antigen binding site, but with different signaling and spacer domains. Although all four CARs were functionally active against the TAG-72 expressing tumor cells, the combination of CD3ζ, OX40, CD28 as well as the CH3-CH2-hinge-hinge domains most efficiently triggered T cell activation. Importantly, CAR mediated functions were not blocked by the soluble TAG-72 antigen at a supraphysiological concentration. Our approach may have the potential to reverse multiple tumor immune evasion mechanisms, avoid CAR immunogenicity, and overcome problems in cancer gene therapy with engineered nanoconstructs.
机译:尽管采用嵌入嵌合纳米核结构抗原受体(汽车)的临床前进成功,但这种治疗方法的某些限制如抗原结合结构域的免疫原性,肿瘤细胞逃生变体的出现和可溶性抗原的阻塞能力仍然存在保持。在这里,我们使用基于寡核头骆驼形单结构域抗体的新型汽车结合部分来解决这些问题。基于其靶特异性和结合亲和力,从免疫骆驼噬菌体文库中选择独特的13个单结构域抗体。这些单一结构域抗体的组合用于产生四种肿瘤相关的糖蛋白(标签-72)的特异性汽车,含有相同的抗原结合位点,但是用不同的信号传导和间隔结构域。尽管所有四辆车都针对表达肿瘤细胞的标签72的功能活性,但CD3 1,OX40,CD28以及CH3-CH2-铰链域的组合最有效地触发T细胞活化。重要的是,轿车介导的功能在超级学浓度下不被可溶性标签-72抗原阻断。我们的方法可能具有逆转多种肿瘤免疫逃避机制的潜力,避免汽车免疫原性,并克服癌症基因治疗的问题。

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