首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Comprehensive Approach for Identifying the T Cell Subset Origin of CD3 and CD28 Antibody-Activated Chimeric Antigen Receptor-Modified T Cells
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Comprehensive Approach for Identifying the T Cell Subset Origin of CD3 and CD28 Antibody-Activated Chimeric Antigen Receptor-Modified T Cells

机译:鉴定CD3和CD28抗体活化的嵌合抗原受体改性T细胞T细胞子集原点的综合方法

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The outcome of therapy with chimeric Ag receptor (CAR)-modified T cells is strongly influenced by the subset origin of the infused T cells. However, because polyclonally activated T cells acquire a largely CD45RO(+)CCR7(-) effector memory phenotype after expansion, regardless of subset origin, it is impossible to know which subsets contribute to the final T cell product. To determine the contribution of naive T cell, memory stem T cell, central memory T cell, effector memory T cell, and terminally differentiated effector T cell populations to the CD3 and CD28-activated CAR-modified T cells that we use for therapy, we followed the fate and function of individually sorted CAR-modified T cell subsets after activation with CD3 and CD28 Abs (CD3/28), transduction and culture alone, or after reconstitution into the relevant subset-depleted population. We show that all subsets are sensitive to CAR transduction, and each developed a distinct T cell functional profile during culture. Naive-derived T cells showed the greatest rate of proliferation but had more limited effector functions and reduced killing compared with memory-derived populations. When cultured in the presence of memory T cells, naive-derived T cells show increased differentiation, reduced effector cytokine production, and a reduced reproliferative response to CAR stimulation. CD3/28-activated T cells expanded in IL-7 and IL-15 produced greater expansion of memory stem T cells and central memory T cell-derived T cells compared with IL-2. Our strategy provides a powerful tool to elucidate the characteristics of CAR-modified T cells, regardless of the protocol used for expansion, reveals the functional properties of each expanded T cell subset, and paves the way for a more detailed evaluation of the effects of manufacturing changes on the subset contribution to in vitro-expanded T cells.
机译:用嵌合Ag受体(轿厢)制型T细胞的治疗结果受到注入T细胞的子组源的强烈影响。然而,由于多克隆活化的T细胞在膨胀后获得大量CD45RO(+)CCR7( - )效应记忆表型,而不管子组起源如何,不可能知道哪些子集有助于最终的T细胞产品。为了确定幼稚T细胞,记忆茎T细胞,中央记忆T细胞,效应记忆T细胞和终端分化的效应T细胞群的贡献,我们用于治疗的CD3和CD28-活性的CAR改性的T细胞,我们在用CD3和CD28 ABS(CD3 / 28)激活后,单独的转导和培养或重建为相关亚特区耗尽群体后,在激活后,在激活后的命运和功能。我们表明所有子集对汽车转导敏感,并且每个培养过程中的不同T细胞功能概况均为敏感。幼稚衍生的T细胞显示出最大的增殖速率,但与记忆群体相比,效应器功能有更多的效应器功能和减少杀戮。当在内存T细胞存在下培养时,幼稚衍生的T细胞显示出增加的分化,降低的效应细胞因子产生,以及对汽车刺激的降低的转向性反应。与IL-2相比,在IL-7和IL-15中膨胀的CD3 / 28活化的T细胞产生更大的膨胀记忆茎T细胞和中央记忆T细胞衍生的T细胞。我们的策略提供了一种强大的工具来阐明汽车改性T细胞的特性,无论用于扩增的方案如何,揭示了每个扩展的T细胞子集的功能性质,并为更详细的制造效果进行了更详细的评估来铺平道路对体外膨胀T细胞的子集贡献的变化。

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