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Inactivation of tumor suppressor genes and cancer therapy: An evolutionary game theory approach.

Authors :
Khadem, Heydar
Kebriaei, Hamed
Veisi, Zahra
Source :
Mathematical Biosciences. Jun2017, Vol. 288, p84-93. 10p.
Publication Year :
2017

Abstract

Inactivation of alleles in tumor suppressor genes (TSG) is one of the important issues resulting in evolution of cancerous cells. In this paper, the evolution of healthy, one and two missed allele cells is modeled using the concept of evolutionary game theory and replicator dynamics. The proposed model also takes into account the interaction rates of the cells as designing parameters of the system. Different combinations of the equilibrium points of the parameterized nonlinear system is studied and categorized into some cases. In each case, the interaction rates’ values are suggested in a way that the equilibrium points of the replicator dynamics are located on an appropriate region of the state space. Based on the suggested interaction rates, it is proved that the system doesn't have any undesirable interior equilibrium point as well. Therefore, the system will converge to the desirable region, where there is a scanty level of cancerous cells. In addition, the proposed conditions for interaction rates guarantee that, when a trajectory of the system reaches the boundaries, then it will stay there forever which is a desirable property since the equilibrium points have been already located on the boundaries, appropriately. The simulation results show the effectiveness of the suggestions in the elimination of the cancerous cells in different scenarios. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00255564
Volume :
288
Database :
Academic Search Index
Journal :
Mathematical Biosciences
Publication Type :
Periodical
Accession number :
122648346
Full Text :
https://doi.org/10.1016/j.mbs.2017.03.001