The Stability of a Tumor–Macrophages Model with Caputo Fractional Operator

Author:

Dehingia Kaushik12ORCID,Boulaaras Salah3ORCID

Affiliation:

1. Department of Mathematics, Sonari College, Sonari 785690, Assam, India

2. Mathematics Research Center, Near East University, TRNC, Mersin 10, 99318 Nicosia, Turkey

3. Department of Mathematics, College of Science, Qassim University, Buraydah 52571, Saudi Arabia

Abstract

This study proposes a fractional-order model in the Caputo sense to describe the interaction between tumor and immune macrophages by assuming that the pro-tumor macrophages induce a Holling type-II response to the tumor. Then, the basic properties of the solutions to the model are studied. Local stability analysis is conducted at each of the equilibria in the model, and a numerical study is performed with varying activation rates of type-II or pro-tumor macrophages and the order of the fractional operator. The numerical findings suggest that type-I or anti-tumor macrophages can stabilize the system if the activation rate of type-II or pro-tumor macrophages is low. Still, for a higher value of the activation rate for type-II or pro-tumor macrophages, the proliferation of tumor cells is uncontrollable and the system becomes unstable. Furthermore, the stability of the system decreases as the order of the fractional operator increases.

Publisher

MDPI AG

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