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A Mathematical Model of the Primary T Cell Response with Contraction Governed by Adaptive Regulatory T Cells

机译:适应性调节性T细胞控制收缩的原发性T细胞反应的数学模型

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The currently accepted paradigm for the primary T cell response is that effector T cells commit to minimal developmental programs in which these cells expand according to some predetermined expansion program. Current mathematical models that are based on these developmental programs do not show the robustness to precursor frequencies that is exhibited in experimental results. Recently we proposed a shift in paradigm wherein the expansion and contraction of effector T cells is the result of negative feedback from adaptive regulatory T cells. These regulatory T cells develop in the course of an immune response and suppress effector cells. In this work, we extend our mathematical model to include regulation of helper T cells. Simulations show that this feedback mechanism generates robust immune responses over a range of five orders of magnitude of precursor frequencies.
机译:当前接受的主要T细胞应答范例是效应T细胞参与最小的发育程序,其中这些细胞根据某些预定的扩增程序进行扩增。基于这些开发程序的当前数学模型没有显示出对实验结果中显示的前驱频率的鲁棒性。最近,我们提出了范式的转变,其中效应T细胞的膨胀和收缩是来自适应性调节T细胞的负反馈的结果。这些调节性T细胞在免疫应答过程中发育并抑制效应细胞。在这项工作中,我们扩展了数学模型,以包括调节辅助性T细胞。仿真表明,这种反馈机制可在前体频率的五个数量级范围内产生强大的免疫反应。

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