textabstractAngiogenesis, the formation of blood vessels from pre-existing ones, is a key event in pathology, including cancer progression, but also in homeostasis and regeneration. As the phenotype of endothelial cells (ECs) is continuously regulated by local biomechanical forces, studying endothelial behaviour in altered gravity might contribute to new insights towards angiogenesis modulation. This study aimed at characterizing EC behaviour after hypergravity exposure (more than 1g), with special focus on cytoskeleton architecture and capillary-like structure formation. Herein, human umbilical vein ECs (HUVECs) were cultured under two-dimensional and three-dimensional conditions at 3g and 10g for 4 and 16 h inside the large diameter centr...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Endothelial cells are very sensitive to microgravity and the morphological and functional changes in...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Angiogenesis, the formation of blood vessels from pre-existing ones, is a key event in pathology, in...
Angiogenesis, the formation of blood vessels from pre-existing ones, is a key event in pathology, in...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
The endothelial cells (ECs), which line the inner surface of vessels, play a fundamental role in mai...
Background/Aims: Cardiovascular complications are common in astronauts returning from a prolonged sp...
Because endothelial cells are fundamental to the maintenance of the functional integrity of the vasc...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Endothelial cells are very sensitive to microgravity and the morphological and functional changes in...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Angiogenesis, the formation of blood vessels from pre-existing ones, is a key event in pathology, in...
Angiogenesis, the formation of blood vessels from pre-existing ones, is a key event in pathology, in...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
Capillary endothelial cells are responsible for homeostatic responses to organismic and environmenta...
The endothelial cells (ECs), which line the inner surface of vessels, play a fundamental role in mai...
Background/Aims: Cardiovascular complications are common in astronauts returning from a prolonged sp...
Because endothelial cells are fundamental to the maintenance of the functional integrity of the vasc...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Endothelial cells are very sensitive to microgravity and the morphological and functional changes in...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...