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Impact of polyclonal anti-CD3/CD28-coated magnetic bead expansion methods on T cell proliferation, differentiation and function

机译:抗CD3 / CD28多克隆包被磁珠扩增方法对T细胞增殖,分化和功能的影响

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Background and aims: The aim of the present study was to compare several in vitro anti-CD3/CD28-coated magnetic bead expansion methods as a means of improving T cell recovery and to evaluate the impact of the respective methods on T cell viability, differentiation and function. The effect of the respective expansion protocols on cytokine production and cytotoxicity was also characterized. Methods: Peripheral blood mononuclear cells were isolated from healthy donors, expanded for 7 days by different methods in vitro and then counted. T cell viability, phenotype and differentiation status were determined by flow cytometry. The cytotoxicity of collected cells was evaluated by a non-radioactive assay. Results: An equal bead-to-cell ratio in the presence of IL-2, IL-7 and IL-15 generated the highest T cell yields (median 4.75-fold increase [range 4.10-6.25], P = 0.043) with a median of 79.20% viable cells (range 70.00%-80.30%). By contrast, a high bead-to-cell ratio (3:1) favored the selection of central memory T cells (CD4: 0.44 [0.40-1.69]; CD8: 0.77 [0.42-1.19], P = 0.043) with increased interferon-gamma (IFN-??) production following re-stimulation (48.5% [42.1%-68.2%], P = 0.043) and also a trend towards enhanced cytotoxicity against target cells (10:1 ratio: 61.80% [40.80%-80.00%], P = 0.068). Conclusions: An equal bead-to-cell ratio is optimal in keeping the balance between promoting proliferations and preserving cellular vitality and the combination of homeostatic cytokines further improved cell output, whereas a high bead-to-cell ratio favored the production of bioactive cells. ? 2012 Elsevier B.V. All rights reserved.
机译:背景与目的:本研究的目的是比较几种体外抗CD3 / CD28包被的磁珠扩增方法,以改善T细胞的回收率,并评估相应方法对T细胞生存能力,分化的影响。和功能。还描述了各个扩增方案对细胞因子产生和细胞毒性的影响。方法:从健康供体中分离外周血单个核细胞,通过不同方法体外扩增7天,然后计数。通过流式细胞术确定T细胞的生存力,表型和分化状态。通过非放射性测定评估收集的细胞的细胞毒性。结果:在存在IL-2,IL-7和IL-15的情况下,相等的磁珠与细胞比率可产生最高的T细胞产量(中位数增加4.75倍[范围4.10-6.25],P = 0.043),且中位数为79.20%的活细胞(范围为70.00%-80.30%)。相比之下,较高的磁珠与细胞比例(3:1)有利于选择中央记忆T细胞(CD4:0.44 [0.40-1.69]; CD8:0.77 [0.42-1.19],P = 0.043),干扰素增加再刺激后产生γ-γ(IFN-α)(48.5%[42.1%-68.2%],P = 0.043),并且还有对靶细胞的细胞毒性增强的趋势(10:1比例:61.80%[40.80%- 80.00%],P = 0.068)。结论:相等的磁珠与细胞比率是最佳的,可在促进增殖和保持细胞活力之间保持平衡,而稳态细胞因子的组合可进一步提高细胞产量,而较高的磁珠与细胞比率则有利于生物活性细胞的产生。 ? 2012 Elsevier B.V.保留所有权利。

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