Genetic alterations and/or epigenetic modifications occur frequently in the majority of cancer cells. In addition to playing a crucial role as promoters of tumorigenesis, these processes can also generate metabolic pathways that are different from those in normal cells. Besides the Warburg effect, an alteration in lipid metabolism is also found in cancer cells. Thus, elucidation of the regulators involved in this metabolic reprogramming might provide tools for diagnosis, prognosis, and ultimately treatment of canine mammary tumours (CMTs) in particular. One such regulator is carnitine palmitoyltransferase 1A (CPT1A), which is involved in transportation of long-chain fatty acids into the mitochondrial matrix for beta-oxidation, thereby provi...
To test the cellular response to an increased fatty acid oxidation, we generated a vector for an ind...
Transcriptional mechanisms epigenetically-regulated in tumoral tissues point out new targets for ant...
Lipotoxicity, caused by intracellular lipid accumulation, accelerates the degenerative process of ce...
Genetic alterations and/or epigenetic modifications occur frequently in the majority of cancer cells...
Deregulation of fatty acid catabolism provides an alternative energy source to glycolysis for cancer...
Deregulation of fatty acid catabolism provides an alternative energy source to glycolysis for cancer...
Metabolic plasticity describes the ability of the cells to adapt their metabolic status in response ...
Breast cancer is the commonest malignancy of women and with its incidence on the rise, the need to i...
Tumor cells gain a survival/growth advantage by adapting their metabolism to respond to environmenta...
Carnitine palmitoyl transferase I (CPT1) catalyzes the transport of long-chain fatty acids into mito...
Carnitine palmitoyltransferase 1 (CPT1) C was the last member of the CPT1 family of genes to be disc...
Carnitine palmitoyl transferase 1 (CPT1) are enzymes that catalyze the conversion of long-chain acyl...
The carnitine palmitoyltransferase (CPT) family is essential for fatty acid oxidation. Recently, we ...
Tumor cells, including cancer stem cells (CSCs) resistant to radio- and chemotherapy, must enhance m...
Cancer cells can be killed by reducing the production of ATP from various pathways, however, this ha...
To test the cellular response to an increased fatty acid oxidation, we generated a vector for an ind...
Transcriptional mechanisms epigenetically-regulated in tumoral tissues point out new targets for ant...
Lipotoxicity, caused by intracellular lipid accumulation, accelerates the degenerative process of ce...
Genetic alterations and/or epigenetic modifications occur frequently in the majority of cancer cells...
Deregulation of fatty acid catabolism provides an alternative energy source to glycolysis for cancer...
Deregulation of fatty acid catabolism provides an alternative energy source to glycolysis for cancer...
Metabolic plasticity describes the ability of the cells to adapt their metabolic status in response ...
Breast cancer is the commonest malignancy of women and with its incidence on the rise, the need to i...
Tumor cells gain a survival/growth advantage by adapting their metabolism to respond to environmenta...
Carnitine palmitoyl transferase I (CPT1) catalyzes the transport of long-chain fatty acids into mito...
Carnitine palmitoyltransferase 1 (CPT1) C was the last member of the CPT1 family of genes to be disc...
Carnitine palmitoyl transferase 1 (CPT1) are enzymes that catalyze the conversion of long-chain acyl...
The carnitine palmitoyltransferase (CPT) family is essential for fatty acid oxidation. Recently, we ...
Tumor cells, including cancer stem cells (CSCs) resistant to radio- and chemotherapy, must enhance m...
Cancer cells can be killed by reducing the production of ATP from various pathways, however, this ha...
To test the cellular response to an increased fatty acid oxidation, we generated a vector for an ind...
Transcriptional mechanisms epigenetically-regulated in tumoral tissues point out new targets for ant...
Lipotoxicity, caused by intracellular lipid accumulation, accelerates the degenerative process of ce...