Interaction of Virus in Cancer Patients: A Theoretical Dynamic Model

Author:

Shakhmurov Veli B.12ORCID,Kurulay Muhammet3ORCID,Sahmurova Aida4,Gursesli Mustafa Can56ORCID,Lanata Antonio5ORCID

Affiliation:

1. Department of Industrial Engineering, Antalya Bilim University, Ciplakli Mahallesi Farabi Caddesi 23 Dosemealti, Antalya 07190, Turkey

2. Center of Analytical-Information Resource, Azerbaijan State Economic University, 194 M. Mukhtarov, Baku AZ1001, Azerbaijan

3. Department of Mathematics Engineering, Yildiz Technical University, Istanbul 34225, Turkey

4. Department of Nursing, Antalya Bilim University, Ciplakli Mahallesi Farabi Caddesi 23 Dosemealti, Antalya 07190, Turkey

5. Department of Information Engineering, University of Florence, Via Santa Marta 3, 50139 Firenze, Italy

6. Department of Education, Literatures, Intercultural Studies, Languages and Psychology, University of Florence, 50135 Florence, Italy

Abstract

This study reports on a phase-space analysis of a mathematical model of tumor growth with the interaction between virus and immune response. In this study, a mathematical determination was attempted to demonstrate the relationship between uninfected cells, infected cells, effector immune cells, and free viruses using a dynamic model. We revealed the stability analysis of the system and the Lyapunov stability of the equilibrium points. Moreover, all endemic equilibrium point models are derived. We investigated the stability behavior and the range of attraction sets of the nonlinear systems concerning our model. Furthermore, a global stability analysis is proved either in the construction of a Lyapunov function showing the validity of the concerned disease-free equilibria or in endemic equilibria discussed by the model. Finally, a simulated solution is achieved and the relationship between cancer cells and other cells is drawn.

Publisher

MDPI AG

Subject

Bioengineering

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