Joint fitting reveals hidden interactions in tumor growth.

J Theor Biol

Instituto de Física Enrique Gaviola, CONICET - UNC, Córdoba, Argentina; Facultad de Matemática, Astronomía y Física, UNC, Córdoba, Argentina.

Published: January 2015

Tumor growth is often the result of the simultaneous development of two or more cancer cell populations. Crucial to the system evolution are the interactions between these populations. To obtain information about these interactions we apply the recently developed vector universality (VUN) formalism to various instances of competition between tumor populations. The formalism allows us (a) to quantify the growth mechanisms of a HeLa cell colony, describing the phenotype switching responsible for its fast expansion, (b) to reliably reconstruct the evolution of the necrotic and viable fractions in both in vitro and in vivo tumors using data for the time dependences of the total masses alone, and (c) to show how the shedding of cells leading to subspheroid formation is beneficial to both the spheroid and subspheroid populations, suggesting that shedding is a strong positive influence on cancer dissemination.

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Source
http://dx.doi.org/10.1016/j.jtbi.2014.10.038DOI Listing

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