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Stability and activity of MCSP-specific chimeric antigen receptors (CARs) depend on the scFv antigen-binding domain and the protein backbone

机译:MCSP特异性嵌合抗原受体(CARs)的稳定性和活性取决于scFv抗原结合结构域和蛋白质骨架

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Chimeric antigen receptor (CAR)-modified T cells emerged as effective tools in the immunotherapy of cancer but can produce severe on-target off-tissue toxicities. This risk can conceivably be overcome, at least partially, by transient transfection. The design of CARs, however, has so far not been optimized for use in non-permanent T cell modification. Here we compared the performance of T cells modified with three different first- and second-generation CARs, each specific for MCSP (HMW-MAA) which is commonly expressed by melanoma cells. Upon RNA transfer, the expression of all receptors was limited in time. The second-generation CARs, which combined CD28-CD3 zeta signaling, were expressed at higher levels and more prolonged than first-generation CARs with CD3 zeta only. The CD28 domain increased the cytokine production, but had only an indirect effect on the lytic capacity, by prolonging the CAR expression. Especially for the second-generation CARs, the scFv clearly impacted the level and duration of CAR expression and the T cell performance. Thus, we identified a CAR high in both expression and anti-tumor cell reactivity. T cells transfected with this CAR increased the mean survival time of mice after challenge with melanoma cells. To facilitate clinical application, this CAR was used to redirect T cells from late-stage melanoma patients by RNA transfection. These T cells mediated effective antigen-specific tumor cell lysis and release of pro-inflammatory cytokines, even after cryoconservation of the transfected T cells. Taken together, the analysis identified a CAR with superior anti-melanoma performance after RNA transfer which is a promising candidate for clinical exploration.
机译:嵌合抗原受体(CAR)修饰的T细胞已成为癌症免疫疗法中的有效工具,但会产生严重的靶外组织毒性。可以设想通过瞬时转染至少部分地克服了这种风险。但是,到目前为止,CAR的设计尚未针对非永久性T细胞修饰进行优化。在这里,我们比较了用三种不同的第一代和第二代CAR修饰的T细胞的性能,每种CAR对黑色素瘤细胞通常表达的MCSP(HMW-MAA)具有特异性。 RNA转移后,所有受体的表达均受到时间限制。与仅带有CD3 zeta的第一代CAR相比,结合了CD28-CD3 zeta信号的第二代CAR的表达水平更高,并且延长的时间更长。 CD28结构域通过延长CAR表达而增加了细胞因子的产生,但对裂解能力仅具有间接作用。特别是对于第二代CAR,scFv明显影响CAR表达的水平和持续时间以及T细胞的性能。因此,我们鉴定了在表达和抗肿瘤细胞反应性方面均高的CAR。用该CAR转染的T细胞增加了用黑色素瘤细胞攻击后小鼠的平均存活时间。为了促进临床应用,该CAR被用于通过RNA转染来重定向晚期黑素瘤患者的T细胞。即使在冷冻保存转染的T细胞后,这些T细胞也能介导有效的抗原特异性肿瘤细胞裂解并释放促炎性细胞因子。两者合计,分析确定了RNA转移后具有优异的抗黑素瘤性能的CAR,这是临床探索的有希望的候选者。

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