Title of article :
COMPARTMENTAL SYSTEM OF REACTION AND DIFFUSION MECHANISM OF CARCINOGENIC POLYCYCLIC AROMATIC HYDROCARBONS IN MAMMALIAN CELL
Author/Authors :
Noor, Aysha University of Engineering and Technology, Lahore - Department of Mathematics, Pakistan , Chaudhary, Qasim Ali University of Engineering and Technology, Lahore - Department of Mathematics, Pakistan , Ikhlaq, Amir University of Engineering and Technology, Lahore - Institute of Environmental Engineering and Research, Pakistan , Shuaib, A. University of Engineering and Technology, Lahore - Department of Physics, Pakistan , Abbas, Amna University of Engineering and Technology, Lahore - Department of Mathematics, Pakistan
From page :
53
To page :
62
Abstract :
The effect of ubiquitous carcinogen pollutants in mammalian cells is the source of several problems. Carcinogenic compounds present in environment as persistent pollutants become the root of carcinoma, toxicity or cancer when they react with hereditary material. To study the cellular exposure of reaction and diffusion mechanism of these carcinogenic compounds in mammalian V79 cell earlier, mathematical modeling with the set of spatially distributed system (PDEs) was developed. In this paper, compartmental modeling approach have used with the inclusion of perinuclear space. The system reduced the spatially distributed, i.e., Partial differential equations (PDEs) system to the temporal, i.e., Ordinary differential equations (ODEs) system, thus reducing the complexity and computational cost. The compartmental system has been simulated computationally in Virtual Cell using homogenization technique. The quantitative consideration of the results of spatially distributed system and temporal system shows a nice agreement. We can extend the compartmental system adding more compartments, reaction and diffusion processes.
Keywords :
Carcinogenic , Cell , Reaction and Diffusion , Homogenization.
Journal title :
Journal of Faculty of Engineering and technology (JFET)
Journal title :
Journal of Faculty of Engineering and technology (JFET)
Record number :
2621708
Link To Document :
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