Metabolism rewiring is an important hallmark of cancers. Being one of the most abundant free amino acids in the human blood, glutamine supports bioenergetics and biosynthesis, tumor growth, and the production of antioxidants through glutaminolysis in cancers. In glutamine dependent cancer cells, more than half of the tricarboxylic/critic acid (TCA) metabolites are derived from glutamine. Glutaminolysis controls the process of converting glutamine into TCA cycle metabolites through the regulation of multiple enzymes, among which the glutaminase shows the importance as the very first step in this process. Targeting glutaminolysis via glutaminase inhibition emerges as a promising strategy to disrupt cancer metabolism and tumor progression. Her...
Tumor cells display fundamental changes in metabolism and nutrient uptake in order to utilize additi...
<div><p>Tumor cells display fundamental changes in metabolism and nutrient uptake in order to utiliz...
The targeting of glutamine metabolism specifically via pharmacological inhibition of glutaminase 1 (...
Metabolic reprogramming in cancer targets glutamine metabolism as a key mechanism to provide energy,...
Metabolic reprogramming in cancer targets glutamine metabolism as a key mechanism to provide energy,...
Glutamine metabolism has been proved to be dysregulated in many cancer cells, and is essential for p...
Rare subpopulations of cancer stem cells (CSCs) have the ability to self-renew and are the primary d...
Cancer cells reprogram their metabolism to fulfil the rising bioenergetic demand due to the high pro...
Abstract: Glutamine metabolism has been proved to be dysregulated in many cancer cells, and is essen...
Increased glutamine metabolism (glutaminolysis) is a hallmark of cancer and is recognised as a key m...
The metabolic adaptations that support oncogenic growth can also render cancer cells dependent on ce...
Several hallmarks of cancer cells are their display of metabolic changes and enhanced proliferation....
Many cancers utilize l-glutamine as a major energy source. Often cited in the literature as l-gluta...
In rapidly dividing cells, including many cancer cells, l-glutamine is a major energy source. Utiliz...
Lung cancer cells are well-documented to rewire their metabolism and energy production networks to s...
Tumor cells display fundamental changes in metabolism and nutrient uptake in order to utilize additi...
<div><p>Tumor cells display fundamental changes in metabolism and nutrient uptake in order to utiliz...
The targeting of glutamine metabolism specifically via pharmacological inhibition of glutaminase 1 (...
Metabolic reprogramming in cancer targets glutamine metabolism as a key mechanism to provide energy,...
Metabolic reprogramming in cancer targets glutamine metabolism as a key mechanism to provide energy,...
Glutamine metabolism has been proved to be dysregulated in many cancer cells, and is essential for p...
Rare subpopulations of cancer stem cells (CSCs) have the ability to self-renew and are the primary d...
Cancer cells reprogram their metabolism to fulfil the rising bioenergetic demand due to the high pro...
Abstract: Glutamine metabolism has been proved to be dysregulated in many cancer cells, and is essen...
Increased glutamine metabolism (glutaminolysis) is a hallmark of cancer and is recognised as a key m...
The metabolic adaptations that support oncogenic growth can also render cancer cells dependent on ce...
Several hallmarks of cancer cells are their display of metabolic changes and enhanced proliferation....
Many cancers utilize l-glutamine as a major energy source. Often cited in the literature as l-gluta...
In rapidly dividing cells, including many cancer cells, l-glutamine is a major energy source. Utiliz...
Lung cancer cells are well-documented to rewire their metabolism and energy production networks to s...
Tumor cells display fundamental changes in metabolism and nutrient uptake in order to utilize additi...
<div><p>Tumor cells display fundamental changes in metabolism and nutrient uptake in order to utiliz...
The targeting of glutamine metabolism specifically via pharmacological inhibition of glutaminase 1 (...