How cancer cells utilize nutrients to support their growth and proliferation in complex nutritional systems is still an open question. However, it is certainly determined by both genetics and an environmental-specific context. The interactions between them lead to profound metabolic specialization, such as consuming glucose and glutamine and producing lactate at prodigious rates. To investigate whether and how glucose and glutamine availability impact metabolic specialization, we integrated computational modeling on the genome-scale metabolic reconstruction with an experimental study on cell lines. We used the most comprehensive human metabolic network model to date, Recon3D, to build cell line-specific models. RNA-Seq data was used to spec...
Development of high throughput analytical methods has given physicians the potential access to exten...
Transcriptional reprogramming of cellular metabolism is a hallmark of cancer. However, systematic ap...
Metabolism is broadly defined as the sum of biochemical reactions within cells that are involved in ...
How cancer cells utilize nutrients to support their growth and proliferation in complex nutritional ...
Cancer is a leading cause of death in the world, and the mechanisms underlying this disease are stil...
Cancer cells reprogram metabolism to support rapid proliferation and survival. Energy metabolism is ...
Metabolism within the tumor microenvironment, where a complex mixture of different cell types reside...
Tumor cells alter their metabolism to maintain unregulated cellular proliferation and survival, but ...
Cancer cells share several metabolic traits, including aerobic production of lactate from glucose (W...
International audienceCancer progression may be affected by metabolism. In this study, we aimed to a...
Cancer cells share several metabolic traits, including aerobic production of lactate from glucose (W...
Cancer cells utilize variable metabolic programs in order to maintain homeostasis in response to env...
Genome-scale models of metabolism can illuminate the molecular basis of cell phenotypes. Since some ...
Metabolism is a hallmark of life and underlies most biological processes in both health and disease....
Development of high throughput analytical methods has given physicians the potential access to exten...
Transcriptional reprogramming of cellular metabolism is a hallmark of cancer. However, systematic ap...
Metabolism is broadly defined as the sum of biochemical reactions within cells that are involved in ...
How cancer cells utilize nutrients to support their growth and proliferation in complex nutritional ...
Cancer is a leading cause of death in the world, and the mechanisms underlying this disease are stil...
Cancer cells reprogram metabolism to support rapid proliferation and survival. Energy metabolism is ...
Metabolism within the tumor microenvironment, where a complex mixture of different cell types reside...
Tumor cells alter their metabolism to maintain unregulated cellular proliferation and survival, but ...
Cancer cells share several metabolic traits, including aerobic production of lactate from glucose (W...
International audienceCancer progression may be affected by metabolism. In this study, we aimed to a...
Cancer cells share several metabolic traits, including aerobic production of lactate from glucose (W...
Cancer cells utilize variable metabolic programs in order to maintain homeostasis in response to env...
Genome-scale models of metabolism can illuminate the molecular basis of cell phenotypes. Since some ...
Metabolism is a hallmark of life and underlies most biological processes in both health and disease....
Development of high throughput analytical methods has given physicians the potential access to exten...
Transcriptional reprogramming of cellular metabolism is a hallmark of cancer. However, systematic ap...
Metabolism is broadly defined as the sum of biochemical reactions within cells that are involved in ...