Center for Modeling and Simulation in the Biosciences, BioQuant-Center, Heidelberg University, 69120 Heidelberg, Germany.
Department of Microbiology and Immunology, Loyola University Medical Center, Maywood, IL 60153, USA.
Viruses. 2018 Apr 17;10(4):200. doi: 10.3390/v10040200.
Mathematical models based on ordinary differential equations (ODE) that describe the population dynamics of viruses and infected cells have been an essential tool to characterize and quantify viral infection dynamics. Although an important aspect of viral infection is the dynamics of viral spread, which includes transmission by cell-free virions and direct cell-to-cell transmission, models used so far ignored cell-to-cell transmission completely, or accounted for this process by simple mass-action kinetics between infected and uninfected cells. In this study, we show that the simple mass-action approach falls short when describing viral spread in a spatially-defined environment. Using simulated data, we present a model extension that allows correct quantification of cell-to-cell transmission dynamics within a monolayer of cells. By considering the decreasing proportion of cells that can contribute to cell-to-cell spread with progressing infection, our extension accounts for the transmission dynamics on a single cell level while still remaining applicable to standard population-based experimental measurements. While the ability to infer the proportion of cells infected by either of the transmission modes depends on the viral diffusion rate, the improved estimates obtained using our novel approach emphasize the need to correctly account for spatial aspects when analyzing viral spread.
基于描述病毒和感染细胞群体动态的常微分方程(ODE)的数学模型一直是描述和量化病毒感染动力学的重要工具。尽管病毒感染的一个重要方面是病毒传播的动态,包括游离病毒粒子的传播和直接细胞间传播,但到目前为止,使用的模型完全忽略了细胞间传播,或者通过感染细胞和未感染细胞之间的简单质量作用动力学来解释这个过程。在这项研究中,我们表明,简单的质量作用方法在描述空间限定环境中的病毒传播时存在不足。我们使用模拟数据提出了一种模型扩展,该扩展允许在单层细胞内对细胞间传播动力学进行正确量化。通过考虑随着感染的进展,能够促进细胞间传播的细胞比例的降低,我们的扩展在保持适用于基于群体的标准实验测量的同时,还考虑了单个细胞水平上的传播动力学。虽然推断通过任一种传播模式感染的细胞的比例的能力取决于病毒的扩散率,但使用我们新方法获得的改进估计值强调了在分析病毒传播时需要正确考虑空间方面。