The role of cancer stem cells (CSC) in tumour growth has received increasing attention in the recent literature. Here we stem from an integro-differential system describing the evolution of a population of CSC and of ordinary (non-stem) tumour cells formulated and studied in a previous paper, and we investigate an approximation in which the system reduces to a pair of nonlinear coupled parabolic equation. We prove that the new system is well posed and we examine some general properties. Numerical simulations show more on the qualitative behaviour of the solutions, concerning in particular the so-called tumour paradox, according to which an increase of the mortality rate of ordinary (non-stem) tumour cells results asymptotically in a faster growth.
Tumours with cancer stem cells: a PDE model / Fasano, A.; Mancini, A.; Primicerio, M .. - In: MATHEMATICAL BIOSCIENCES. - ISSN 0025-5564. - STAMPA. - 272:(2016), pp. 76-80. [10.1016/j.mbs.2015.12.003]
Tumours with cancer stem cells: a PDE model
FASANO, ANTONIO;MANCINI, ALBERTO;PRIMICERIO, MARIO
2016
Abstract
The role of cancer stem cells (CSC) in tumour growth has received increasing attention in the recent literature. Here we stem from an integro-differential system describing the evolution of a population of CSC and of ordinary (non-stem) tumour cells formulated and studied in a previous paper, and we investigate an approximation in which the system reduces to a pair of nonlinear coupled parabolic equation. We prove that the new system is well posed and we examine some general properties. Numerical simulations show more on the qualitative behaviour of the solutions, concerning in particular the so-called tumour paradox, according to which an increase of the mortality rate of ordinary (non-stem) tumour cells results asymptotically in a faster growth.File | Dimensione | Formato | |
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