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HIV-HCV 合并感染动力学的无治疗数学建模。

Mathematical Modelling of HIV-HCV Coinfection Dynamics in Absence of Therapy.

机构信息

Department of Mathematics, Makerere University, P.O. Box 7062, Kampala, Uganda.

Institute of Mathematical Sciences (IMS), Strathmore University, P.O. Box 59857-00200, Nairobi, Kenya.

出版信息

Comput Math Methods Med. 2020 Oct 6;2020:2106570. doi: 10.1155/2020/2106570. eCollection 2020.

Abstract

Globally, it is estimated that of the 36.7 million people infected with human immunodeficiency virus (HIV), 6.3% are coinfected with hepatitis C virus (HCV). Coinfection with HIV reduces the chance of HCV spontaneous clearance. In this work, we formulated and analysed a deterministic model to study the HIV and HCV coinfection dynamics in absence of therapy. Due to chronic stage of HCV infection being long, asymptomatic, and infectious, our model formulation was based on the splitting of the chronic stage into the following: before onset of cirrhosis and its complications and after onset of cirrhosis. We computed the basic reproduction numbers using the next generation matrix method. We performed numerical simulations to support the analytical results. We carried out sensitivity analysis to determine the relative importance of the different parameters influencing the HIV-HCV coinfection dynamics. The findings reveal that, in the long run, there is a substantial number of individuals coinfected with HIV and latent HCV. Therefore, HIV and latently HCV-infected individuals need to seek early treatment so as to slow down the progression of HIV to AIDS and latent HCV to advanced HCV.

摘要

据估计,在全球 3670 万感染人类免疫缺陷病毒 (HIV) 的人中,有 6.3%同时感染了丙型肝炎病毒 (HCV)。HIV 合并感染会降低 HCV 自发清除的机会。在这项工作中,我们制定并分析了一个确定性模型,以研究在没有治疗的情况下 HIV 和 HCV 合并感染的动态。由于 HCV 感染的慢性阶段持续时间长、无症状且具有传染性,因此我们的模型制定是基于将慢性阶段分为以下两个阶段:肝硬化及其并发症发生前和肝硬化发生后。我们使用下一代矩阵方法计算了基本繁殖数。我们进行了数值模拟来支持分析结果。我们进行了敏感性分析,以确定影响 HIV-HCV 合并感染动态的不同参数的相对重要性。研究结果表明,从长远来看,有相当数量的人同时感染了 HIV 和潜伏性 HCV。因此,HIV 和潜伏性 HCV 感染的个体需要寻求早期治疗,以减缓 HIV 向艾滋病和潜伏性 HCV 向晚期 HCV 的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fabe/7566217/cef31317e2e9/CMMM2020-2106570.001.jpg

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