病毒和细胞因子延迟对自身免疫动力学的影响

F. F. Chenar, Y. Kyrychko, K. Blyuss
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引用次数: 7

摘要

已知自身免疫性疾病的发病和发展的主要原因是感染。一个重要的实际问题是确定由于对感染的免疫反应而导致免疫耐受的破坏导致自身免疫的确切机制。在本文中,我们建立了一个针对病毒感染的免疫反应的数学模型,其中包括具有不同激活阈值的T细胞、调节性T细胞(Tregs)和介导免疫动力学的细胞因子。特别强调了与感染和免疫反应过程相关的时间延迟的作用。对模型各种稳定状态的稳定性分析使我们能够确定与不同类型免疫行为相关的参数区域,例如感染的正常清除,慢性感染和自身免疫动力学。通过数值模拟来说明不同的动力状态,并识别不同动力状态下的吸引盆地。分析的一个重要结果是,不仅系统的参数,而且感染的初始水平和免疫系统的初始状态决定了动力学的进展和结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Viral and Cytokine Delays on Dynamics of Autoimmunity
A major contribution to the onset and development of autoimmune disease is known to come from infections. An important practical problem is identifying the precise mechanism by which the breakdown of immune tolerance as a result of immune response to infection leads to autoimmunity. In this paper, we develop a mathematical model of immune response to a viral infection, which includes T cells with different activation thresholds, regulatory T cells (Tregs), and a cytokine mediating immune dynamics. Particular emphasis is made on the role of time delays associated with the processes of infection and mounting the immune response. Stability analysis of various steady states of the model allows us to identify parameter regions associated with different types of immune behaviour, such as, normal clearance of infection, chronic infection, and autoimmune dynamics. Numerical simulations are used to illustrate different dynamical regimes, and to identify basins of attraction of different dynamical states. An important result of the analysis is that not only the parameters of the system, but also the initial level of infection and the initial state of the immune system determine the progress and outcome of the dynamics.
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