The metabolism of endothelial cells (ECs) has only recently been recognized as a driving force of angiogenesis. Metabolic pathways, such as glycolysis, fatty acid oxidation, and glutamine metabolism, have distinct, essential roles during vessel formation. Moreover, EC metabolism is markedly perturbed in pathologies such as cancer and diabetes. For instance, because tumor ECs increase glycolysis, lowering hyperglycolysis in tumor ECs induces therapeutic benefits in preclinical tumor models. Expanding our knowledge of how ECs alter their metabolism in disease could pave the way for novel therapeutic opportunities. In this review, we discuss the most recent insights into EC metabolism in health and disease, with emphasis on the changes in meta...
Angiogenesis has been traditionally studied by focusing on growth factors and other proangiogenic si...
The endothelium is the orchestral conductor of blood vessel function. Pathological blood vessel form...
Recently, endothelial cell metabolism has emerged as an essential driver and regulator of both blood...
The stromal vasculature in tumors is a vital conduit of nutrients and oxygen for cancer cells. To da...
Endothelial cell metabolism has recently emerged as an important coregulator of angiogenesis and is ...
Endothelial cell (EC) metabolism is important for health and disease. Metabolic pathways, such as gl...
Atherosclerosis is a leading cause of morbidity and mortality in Western society. Despite improved i...
Excessive angiogenesis (i.e., the formation of new blood vessels) contributes to different pathologi...
Tumour tissue is characterised by fluctuating oxygen concentrations, decreased nutrient supply, and ...
Excessive angiogenesis (i.e., the formation of new blood vessels) contributes to different pathologi...
Tumour tissue is characterised by fluctuating oxygen concentrations, decreased nutrient supply, and ...
In 2009, it was postulated that endothelial cells (ECs) would only be able to execute the orders of ...
The importance of endothelial cell (EC) metabolism and its regulatory role in the angiogenic behavio...
Higher organisms rely on a closed cardiovascular circulatory system with blood vessels supplying vit...
Angiogenesis has been traditionally studied by focusing on growth factors and other proangiogenic si...
Angiogenesis has been traditionally studied by focusing on growth factors and other proangiogenic si...
The endothelium is the orchestral conductor of blood vessel function. Pathological blood vessel form...
Recently, endothelial cell metabolism has emerged as an essential driver and regulator of both blood...
The stromal vasculature in tumors is a vital conduit of nutrients and oxygen for cancer cells. To da...
Endothelial cell metabolism has recently emerged as an important coregulator of angiogenesis and is ...
Endothelial cell (EC) metabolism is important for health and disease. Metabolic pathways, such as gl...
Atherosclerosis is a leading cause of morbidity and mortality in Western society. Despite improved i...
Excessive angiogenesis (i.e., the formation of new blood vessels) contributes to different pathologi...
Tumour tissue is characterised by fluctuating oxygen concentrations, decreased nutrient supply, and ...
Excessive angiogenesis (i.e., the formation of new blood vessels) contributes to different pathologi...
Tumour tissue is characterised by fluctuating oxygen concentrations, decreased nutrient supply, and ...
In 2009, it was postulated that endothelial cells (ECs) would only be able to execute the orders of ...
The importance of endothelial cell (EC) metabolism and its regulatory role in the angiogenic behavio...
Higher organisms rely on a closed cardiovascular circulatory system with blood vessels supplying vit...
Angiogenesis has been traditionally studied by focusing on growth factors and other proangiogenic si...
Angiogenesis has been traditionally studied by focusing on growth factors and other proangiogenic si...
The endothelium is the orchestral conductor of blood vessel function. Pathological blood vessel form...
Recently, endothelial cell metabolism has emerged as an essential driver and regulator of both blood...