International audienceWe formulate an individual-based model and an integro-differential model of phenotypic evolution, under cytotoxic drugs, in a cancer cell population structured by the expression levels of survival-potential and proliferation-potential. We apply these models to a recently studied experimental system. Our results suggest that mechanisms based on fundamental laws of biology can reversibly push an actively-proliferating, and drug-sensitive, cell population to transition into a weakly-proliferative and drug-tolerant state, which will eventually facilitate the emergence of more potent, proliferating and drug-tolerant cells
Background. Drug-induced drug resistance in cancer has been attributed to diverse biological mechani...
International audienceWe consider a phenotype-structured model of evolutionary dynamics in a populat...
International audiencePhenotype heterogeneity in cancer cell populations, be it of genetic, epigenet...
International audienceWe formulate an individual-based model and an integro-differential model of ph...
International audienceWe formulate an individual-based model and a population model of phenotypic ev...
We formulate an individual-based model and an integro-differential model of phenotypic evolution, un...
First submitted versionIn recent experiments on isogenetic cancer cell lines, it was observed that e...
In recent experiments on isogenetic cancer cell lines, it was observed that exposure to high doses o...
In recent experiments on isogenetic cancer cell lines, it was observed that exposure to high doses o...
International audienceBACKGROUND Drug-induced drug resistance in cancer hasbeen attributed to divers...
International audienceAbstractBackgroundA thorough understanding of the ecological and evolutionary ...
International audienceThe question of a mathematical representation and theoretical overcoming by op...
SummaryAccumulating evidence implicates heterogeneity within cancer cell populations in the response...
This article is a proceeding survey (deepening a talk given by the first author at the BioMath 2019 ...
Background Drug-induced drug resistance in cancer has been attributed to diverse biological mechanis...
Background. Drug-induced drug resistance in cancer has been attributed to diverse biological mechani...
International audienceWe consider a phenotype-structured model of evolutionary dynamics in a populat...
International audiencePhenotype heterogeneity in cancer cell populations, be it of genetic, epigenet...
International audienceWe formulate an individual-based model and an integro-differential model of ph...
International audienceWe formulate an individual-based model and a population model of phenotypic ev...
We formulate an individual-based model and an integro-differential model of phenotypic evolution, un...
First submitted versionIn recent experiments on isogenetic cancer cell lines, it was observed that e...
In recent experiments on isogenetic cancer cell lines, it was observed that exposure to high doses o...
In recent experiments on isogenetic cancer cell lines, it was observed that exposure to high doses o...
International audienceBACKGROUND Drug-induced drug resistance in cancer hasbeen attributed to divers...
International audienceAbstractBackgroundA thorough understanding of the ecological and evolutionary ...
International audienceThe question of a mathematical representation and theoretical overcoming by op...
SummaryAccumulating evidence implicates heterogeneity within cancer cell populations in the response...
This article is a proceeding survey (deepening a talk given by the first author at the BioMath 2019 ...
Background Drug-induced drug resistance in cancer has been attributed to diverse biological mechanis...
Background. Drug-induced drug resistance in cancer has been attributed to diverse biological mechani...
International audienceWe consider a phenotype-structured model of evolutionary dynamics in a populat...
International audiencePhenotype heterogeneity in cancer cell populations, be it of genetic, epigenet...