靶向巨噬细胞的癌症治疗策略
Macrophage-directed therapeutic strategies in cancer.
肿瘤相关巨噬细胞(TAMs)是肿瘤微环境的主要组成部分,具有显著的功能可塑性,根据所处的微环境信号,既可表现为促进肿瘤进展的免疫抑制细胞,也可表现为支持抗肿瘤免疫的免疫刺激细胞。
英文原题:Dual targeting of solid tumors using cytokine-induced killer cells modified with a CAR anti-tenascin C and a secretable EGFRxCD3 bispecific antibody.
我们得出结论,CAR-TNC5联合EGFRxCD3能够赋予CIK细胞在体内不同且可能协同的功能。
为生成对实体瘤具有增强靶向和穿透能力的CARCIK细胞,我们设计了针对tenascin C(TNC)的新型CAR分子,TNC是一种在多种肿瘤类型中过表达的细胞外基质和表面分子。我们生成了两种不同的抗TNC CAR构建体,它们共享抗TNC scFv结构域,与CD3ζ片段融合,但共信号结构域不同:CAR-TNC4携带4-1BB,CAR-TNC5携带CD28和OX40结构域。两种CAR均通过与sleeping beauty转座酶质粒共转染引入细胞因子诱导的杀伤细胞(CIK)中。CARCIK-TNC细胞对TNC+靶标具有细胞毒性,在响应靶细胞结合时增殖并分泌IFN-γ和IL-2细胞因子,CARCIK-TNC5的整体疗效高于CARCIK-TNC4。为增强活性和特异性,我们还生成了一种双构建体,携带可分泌的EGFRxCD3双特异性T细胞衔接器(sBiTE)抗体cDNA。转染EGFRxCD3/CAR-TNC5的CIK显示出两种分子的良好表达,与转染单靶向分子的细胞相比,在体外对MDA-MB-231细胞表现出协同杀伤作用。在体内,在皮下TNC+EGFR+MDA-MB-231异种移植模型中,注射转染双构建体相比单构建体的CIK细胞后,观察到显著增强的肿瘤生长控制。我们得出结论,CAR-TNC5联合EGFRxCD3可赋予CIK细胞在体内不同且潜在协同的功能。
To generate CARCIK cells with enhanced targeting and penetration of solid tumors, we have designed new CAR molecules against tenascin C (TNC), an extracellular matrix and surface molecule, overexpressed in several tumor types. Two different anti-TNC CAR constructs were generated, sharing the anti-TNC scFv domain, fused to the CD3ζ fragment, but differing in co-signaling domains: CAR-TNC4 carrying the 4-1BB and CAR-TNC5 the CD28 and OX40 domains. Both CARs were introduced into cytokine-induced killer cells (CIK) by co-transfection with the sleeping beauty transposase plasmid. CARCIK-TNC cells were cytotoxic against TNC + targets, proliferated and secreted the IFN-γ and IL-2 cytokines in response to target cell binding, with overall higher efficacy of CARCIK-TNC5 compared to CARCIK-TNC4. To enhance activity and specificity, we also generated a dual construct, carrying a secretable EGFRxCD3 bispecific T cell engager (sBiTE) antibody cDNA. CIK transfected with EGFRxCD3/CAR-TNC5 showed good expression of both molecules and synergistic killing of MDA-MB-231 cells in vitro compared to cells transfected with the single-targeting molecules. Also in vivo, in the subcutaneous TNC + EGFR + MDA-MB-231 xenograft model, significantly enhanced control of tumor growth was observed after injection of CIK cells transfected with dual, compared to single constructs. We conclude that CAR-TNC5 combined with EGFRxCD3 can endow CIK cells with different and potentially synergistic functions in vivo.
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