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模拟细菌感染与新冠疫情的交叉行为。

Modeling the crossover behavior of the bacterial infection with the COVID-19 epidemics.

作者信息

Yu Zhenhua, Sohail Ayesha, Arif Robia, Nutini Alessandro, Nofal Taher A, Tunc Sümeyye

机构信息

Institute of Systems Security and Control, College of Computer Science and Technology, Xi'an University of Science and Technology, Xi'an 710054, China.

Department of Mathematics, Comsats University Islamabad, Lahore Campus, 54000, Pakistan.

出版信息

Results Phys. 2022 Aug;39:105774. doi: 10.1016/j.rinp.2022.105774. Epub 2022 Jul 5.

Abstract

To explore the crossover linkage of the bacterial infections resulting from the viral infection, within the host body, a computational framework is developed. It analyzes the additional pathogenic effect of Streptococcus pneumonia, one of the bacteria that can trigger the super-infection mechanism in the COVID-19 syndrome and the physiological effects of innate immunity for the control or eradication of this bacterial infection. The computational framework, in a novel manner, takes into account the action of pro-inflammatory and anti-inflammatory cytokines in response to the function of macrophages. A hypothetical model is created and is transformed to a system of non-dimensional mathematical equations. The dynamics of three main parameters (macrophages sensitivity , sensitivity to cytokines and bacterial sensitivity ), analyzes a "threshold value" termed as the basic reproduction number which is based on a sub-model of the inflammatory state. Piece-wise differentiation approach is used and dynamical analysis for the inflammatory response of macrophages is studied in detail. The results shows that the inflamatory response, with high probability in bacterial super-infection, is concomitant with the COVID-19 infection. The mechanism of action of the anti-inflammatory cytokines is discussed during this research and it is observed that these cytokines do not prevent inflammation chronic, but only reduce its level while increasing the activation threshold of macrophages. The results of the model quantifies the probable deficit of the biological mechanisms linked with the anti-inflammatory cytokines. The numerical results shows that for such mechanisms, a minimal action of the pathogens is strongly amplified, resulting in the "chronicity" of the inflammatory process.

摘要

为了探究宿主体内病毒感染引发的细菌感染的交叉联系,开发了一个计算框架。它分析了肺炎链球菌的额外致病作用,肺炎链球菌是一种可引发新冠综合征中超级感染机制的细菌,以及先天免疫对控制或根除这种细菌感染的生理影响。该计算框架以一种新颖的方式考虑了促炎和抗炎细胞因子对巨噬细胞功能的反应作用。创建了一个假设模型,并将其转化为无量纲数学方程组。分析了三个主要参数(巨噬细胞敏感性 、对细胞因子的敏感性 和细菌敏感性 )的动态变化,基于炎症状态子模型分析了一个称为基本繁殖数 的“阈值”。采用分段微分方法,详细研究了巨噬细胞炎症反应的动力学分析。结果表明,在细菌超级感染中极有可能出现的炎症反应与新冠病毒感染相伴。在本研究中讨论了抗炎细胞因子的作用机制,观察到这些细胞因子并不能预防慢性炎症,而只是降低其水平同时提高巨噬细胞的激活阈值。模型结果量化了与抗炎细胞因子相关的生物学机制可能存在的缺陷。数值结果表明,对于此类机制,病原体的最小作用会被强烈放大,导致炎症过程的“慢性化”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef63/9254571/5a43feebced1/gr1_lrg.jpg

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