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Structure of the Signal Transduction Domain in Second-Generation CAR Regulates the Input Efficiency of CAR Signals

机译:二代汽车信号转导域的结构调节汽车信号的输入效率

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摘要

T cells that are genetically engineered to express chimeric antigen receptor (CAR) have a strong potential to eliminate tumor cells, yet the CAR-T cells may also induce severe side effects due to an excessive immune response. Although optimization of the CAR structure is expected to improve the efficacy and toxicity of CAR-T cells, the relationship between CAR structure and CAR-T cell functions remains unclear. Here, we constructed second-generation CARs incorporating a signal transduction domain (STD) derived from CD3ζ and a 2nd STD derived from CD28, CD278, CD27, CD134, or CD137, and investigated the impact of the STD structure and signaling on CAR-T cell functions. Cytokine secretion of CAR-T cells was enhanced by 2nd STD signaling. T cells expressing CAR with CD278-STD or CD137-STD proliferated in an antigen-independent manner by their STD tonic signaling. CAR-T cells incorporating CD28-STD or CD278-STD between TMD and CD3ζ-STD showed higher cytotoxicity than first-generation CAR or second-generation CARs with other 2nd STDs. The potent cytotoxicity of these CAR-T cells was not affected by inhibiting the 2nd STD signals, but was eliminated by placing the STDs after the CD3ζ-STD. Our data highlighted that CAR activity was affected by STD structure as well as by 2nd STD signaling.
机译:基因工程化以表达嵌合抗原受体(轿厢)的T细胞具有强烈的消除肿瘤细胞的潜力,但由于过度的免疫应答,Car-T细胞也可能引起严重的副作用。尽管预期汽车结构的优化可以提高汽车T细胞的功效和毒性,但汽车结构与汽车 - T细胞功能之间的关系仍不清楚。在这里,我们构建了衍生自CD3×,CD278,CD27,CD134或CD137的信号转导域(STD)的第二代汽车,并研究了STD结构的影响和在CAR-T上的信号传导细胞功能。通过第二STD信号传导增强了CAR-T细胞的细胞因子分泌。 T细胞与CD278-STD或CD137-STD表达CD278-STD或CD137-STD以抗原独立的方式通过其STD滋补信号传导增殖。掺入TMD和CD31-STD之间的CD28-STD或CD278-STD的CAR-T细胞显示出比第一代汽车或第二代汽车的细胞毒性更高,与其他第二STD。这些Car-T细胞的有效细胞毒性不受抑制第2 STD信号的影响,而是通过将STD放置在CD3×STD之后来消除。我们的数据突出显示,汽车活动受到STD结构的影响以及第二STD信令。

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