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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Small variations in multiple parameters account for wide variations in HIV-1 set-points: a novel modelling approach.
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Small variations in multiple parameters account for wide variations in HIV-1 set-points: a novel modelling approach.

机译:多个参数的微小差异导致HIV-1设定点的较大差异:一种新颖的建模方法。

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Steady-state levels of HIV-1 viraemia in the plasma vary more than a 1,000-fold between HIV-positive patients and are thought to be influenced by several different host and viral factors such as host target cell availability, host anti-HIV immune response and the virulence of the virus. Previous mathematical models have taken the form of classical ecological food-chain models and are unable to account for this multifactorial nature of the disease. These models suggest that the steady-state viral load (i.e. the set-point) is determined by immune response parameters only. We have devised a generalized consensus model in which the conventional parameters are replaced by so-called 'process functions'. This very general approach yields results that are insensitive to the precise form of the mathematical model. Here we applied the approach to HIV-1 infections by estimating the steady-state values of several process functions from published patient data. Importantly, these estimates are generic because they are independent of the precise form of the underlying processes. We recorded the variation in the estimated steady-state values of the process functions in a group of HIV-1 patients. We developed a novel model by providing explicit expressions for the process functions having the highest patient-to-patient variation in their estimated values. Small variations from patient to patient for several parameters of the new model collectively accounted for the large variations observed in the steady-state viral burden. The novel model remains in full agreement with previous models and data.
机译:在HIV阳性患者之间,血浆中HIV-1病毒血症的稳态水平变化超过1,000倍,并且被认为受多种不同宿主和病毒因素的影响,例如宿主靶细胞的可用性,宿主抗HIV免疫反应和病毒的毒力。先前的数学模型采用经典生态食物链模型的形式,无法解释这种疾病的这种多因素性质。这些模型表明稳态病毒载量(即设定点)仅由免疫反应参数确定。我们设计了一种通用共识模型,其中常规参数被所谓的“过程函数”代替。这种非常通用的方法得出的结果对数学模型的精确形式不敏感。在这里,我们通过从已发布的患者数据中估算几个过程功能的稳态值,将方法应用于HIV-1感染。重要的是,这些估计是通用的,因为它们与基础过程的精确形式无关。我们记录了一组HIV-1患者的过程功能估计稳态值的变化。我们通过为过程函数提供明确的表达式来开发新颖的模型,这些函数在估计值之间因人而异。新模型的几个参数因患者而异,共同说明了稳态病毒负荷中观察到的较大变化。新模型与先前的模型和数据完全一致。

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