Description
A modified mathematical model describing the human immunodeficiency virus (HIV) pathogenesis with cytotoxic T-lymphocytes (CTL) and infected cells in eclipse phase is presented and studied in this paper. The model under consideration also includes a saturated rate describing viral infection. First, the positivity and boundedness of solutions for nonnegative initial data are proved. Next, the global stability of the disease free steady state and the endemic steady states are established depending on the basic reproduction number R[subscript 0] and the CTL immune response reproduction number R[subscript CTL]. Moreover, numerical simulations are performed in order to show the numerical stability for each steady state and to support our theoretical findings. Our model based findings suggest that system immunity represented by CTL may control viral replication and reduce the infection.
Details
Title
- Global Analysis for an HIV Infection Model with CTL Immune Response and Infected Cells in Eclipse Phase
Contributors
- Allali, Karam (Author)
- Danane, Jaouad (Author)
- Kuang, Yang (Contributor)
- College of Liberal Arts and Sciences (Contributor)
Date Created
The date the item was original created (prior to any relationship with the ASU Digital Repositories.)
2017-08-21
Resource Type
Collections this item is in
Identifier
- Digital object identifier: 10.3390/app7080861
- Identifier TypeInternational standard serial numberIdentifier Value2076-3417
Note
- The final version of this article, as published in Applied Sciences, can be viewed online at: http://www.mdpi.com/2076-3417/7/8/861
Citation and reuse
Cite this item
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Allali, K., Danane, J., & Kuang, Y. (2017). Global Analysis for an HIV Infection Model with CTL Immune Response and Infected Cells in Eclipse Phase. Applied Sciences, 7(8), 861. doi:10.3390/app7080861