Successful adaptation to varying microenvironmental constraints plays a crucial role during carcinogenesis. We develop a hybrid cellular automation approach to investigate the cell–microenvironmental interactions that mediate somatic evolution of cancer cells. This allows investigation of the hypothesis that regions of premalignant lesions develop a substrate-limited environment as proliferation carries cells away from blood vessels which remain separated by the intact basement membrane. We find that selective forces in tumoural regions furthest from the blood supply act to favour cells whose metabolism is best suited to respond to local changes in oxygen, glucose and pH levels. The model predicts three phases of somatic evolution. Initiall...
Cancer cells preferentially utilize glycolysis, instead of oxidative phosphorylation, for metabolism...
3siAcidosis of the tumor microenvironment leads to cancer invasion, progression and resistance to th...
Summarization: Cancer growth is a complex process which depends on several tasks that cancer cells h...
Successful adaptation to varying microenvironmental constraints plays a crucial role during carcinog...
Successful adaptation to varying microenvironmental constraints plays a crucial role during carcinog...
Conceptual models of carcinogenesis typically consist of an evolutionary sequence of heritable chang...
This is an open-access article distributed under the terms of the Creative Commons Attribution Licen...
<p>The inter- and intra-tumoral metabolic phenotypes of tumors are heterogeneous, and this is relate...
Conceptual models of carcinogenesis typically consist of an evolutionary sequence of heritable chang...
BACKGROUND: The transition from premalignant to invasive tumour growth is a prolonged multistep proc...
Background: The transition from premalignant to invasive tumour growth is a prolonged multistep proc...
We present a cellular automaton model of clonal evolution in cancer aimed at investigating the emerg...
Abstract: Cancer cells preferentially utilize glycolysis, instead of oxidative phosphorylation, for ...
The rapid growth of cancer cells fueled by glycolysis produces large amounts of protons in cancer ce...
Cancer research is not only a fast growing field involving many branches of science, but also an int...
Cancer cells preferentially utilize glycolysis, instead of oxidative phosphorylation, for metabolism...
3siAcidosis of the tumor microenvironment leads to cancer invasion, progression and resistance to th...
Summarization: Cancer growth is a complex process which depends on several tasks that cancer cells h...
Successful adaptation to varying microenvironmental constraints plays a crucial role during carcinog...
Successful adaptation to varying microenvironmental constraints plays a crucial role during carcinog...
Conceptual models of carcinogenesis typically consist of an evolutionary sequence of heritable chang...
This is an open-access article distributed under the terms of the Creative Commons Attribution Licen...
<p>The inter- and intra-tumoral metabolic phenotypes of tumors are heterogeneous, and this is relate...
Conceptual models of carcinogenesis typically consist of an evolutionary sequence of heritable chang...
BACKGROUND: The transition from premalignant to invasive tumour growth is a prolonged multistep proc...
Background: The transition from premalignant to invasive tumour growth is a prolonged multistep proc...
We present a cellular automaton model of clonal evolution in cancer aimed at investigating the emerg...
Abstract: Cancer cells preferentially utilize glycolysis, instead of oxidative phosphorylation, for ...
The rapid growth of cancer cells fueled by glycolysis produces large amounts of protons in cancer ce...
Cancer research is not only a fast growing field involving many branches of science, but also an int...
Cancer cells preferentially utilize glycolysis, instead of oxidative phosphorylation, for metabolism...
3siAcidosis of the tumor microenvironment leads to cancer invasion, progression and resistance to th...
Summarization: Cancer growth is a complex process which depends on several tasks that cancer cells h...