Experimental evidence confirms the existence of glycolytic oscillations in cancer, which allows it to self-organize in time and space far from thermodynamic equilibrium, and provides it with high robustness, complexity and adaptability. A kinetic model is proposed for HeLa tumor cells grown in hypoxia conditions. It shows oscillations in a wide range of parameters. Two control parameters (glucose and inorganic phosphate concentration) were varied to explore the phase space, showing also the presence of limit cycles and bifurcations. The complexity of the system was evaluated by focusing on stationary state stability and Lempel-Ziv complexity. Moreover, the calculated entropy production rate was demonstrated behaving as a Lyapunov function. (C) 2017 Elsevier B.V. All rights reserved.

Phase transitions in tumor growth: V what can be expected from cancer glycolytic oscillations? / Martin, R. R.; Montero, S.; Silva, E.; Bizzarri, M.; Cocho, G.; Mansilla, R.; Nieto-Villar, J. M.. - In: PHYSICA. A. - ISSN 0378-4371. - 486:(2017), pp. 762-771. [10.1016/j.physa.2017.06.001]

Phase transitions in tumor growth: V what can be expected from cancer glycolytic oscillations?

S. Montero;M. Bizzarri;
2017

Abstract

Experimental evidence confirms the existence of glycolytic oscillations in cancer, which allows it to self-organize in time and space far from thermodynamic equilibrium, and provides it with high robustness, complexity and adaptability. A kinetic model is proposed for HeLa tumor cells grown in hypoxia conditions. It shows oscillations in a wide range of parameters. Two control parameters (glucose and inorganic phosphate concentration) were varied to explore the phase space, showing also the presence of limit cycles and bifurcations. The complexity of the system was evaluated by focusing on stationary state stability and Lempel-Ziv complexity. Moreover, the calculated entropy production rate was demonstrated behaving as a Lyapunov function. (C) 2017 Elsevier B.V. All rights reserved.
2017
Phase transition; Entropy production rate; Lempel-Ziv complexity; Cancer glycolytic oscillations
01 Pubblicazione su rivista::01a Articolo in rivista
Phase transitions in tumor growth: V what can be expected from cancer glycolytic oscillations? / Martin, R. R.; Montero, S.; Silva, E.; Bizzarri, M.; Cocho, G.; Mansilla, R.; Nieto-Villar, J. M.. - In: PHYSICA. A. - ISSN 0378-4371. - 486:(2017), pp. 762-771. [10.1016/j.physa.2017.06.001]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1682632
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