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Multiple Parameterisation of Human Immune Response in HIV: Many-Cell Models

机译:HIV中人类免疫反应的多个参数化:多细胞模型

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摘要

Mathematical and computational models of the Human Immune Response have gained considerable attention over recent years and a number of approaches have been reported in the literature. One of the most successful relies on modelling, at cell level, the key components of the response using cellular automata/Monte Carlo strategies. However, a core issue remains the parameterisation required to demonstrate realistic evolution. We discuss a model of 8 cell-types, which can represent both T cell-mediated and humoral functions of the immune system, and focus on parameter sets, with values chosen to reflect realistic time-scales, comparable to natural biological processes. Analysis of the influence of the parameters introduced enables comparison of the properties of the 8-cell and basic models. In particular, a slightly reduced critical mutation value is found to lead to immune deficiency while, when a variable mutation growth factor is applied, immune breakdown occurs rapidly. The 8-cell model is susceptible to some reduction and aggregation, but system "fitness" dominates response.
机译:近年来,人类免疫反应的数学和计算模型引起了相当大的关注,文献中报道了许多方法。最成功的方法之一是在细胞水平上使用细胞自动机/蒙特卡洛策略对响应的关键成分进行建模。但是,核心问题仍然是证明现实发展所需的参数设置。我们讨论了8种细胞类型的模型,该模型可以代表免疫系统的T细胞介导的和体液功能,并着重于参数集,其值被选择为反映实际时间尺度的,可与自然生物学过程相比。通过分析引入的参数的影响,可以比较8单元模型和基本模型的属性。特别是,发现临界突变值略微降低会导致免疫缺陷,而当应用可变突变生长因子时,免疫破坏迅速发生。 8单元模型易于减少和聚集,但系统的“适应性”主导响应。

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