Real and simulated microgravity induce a variety of changes in human cells. Most importantly, changes in the cytoskeleton have been noted, and studies on microtubules have shown that they are gravi-sensitive. This study focuses on the effects of short-term real microgravity on gene expression, protein content, and cytoskeletal structure of human chondrocytes. We cultivated human chondrocytes, took them along a parabolic flight during the 24th Deutsches Zentrum für Luft- und Raumfahrt Parabolic (DLR) Flight Campaign, and fixed them after the 1st and the 31st parabola. Immunofluorescence microscopy revealed no changes after the 1st parabola, but disruptions of β-tubulin, vimentin, and cytokeratin networks after the 31st parabola. No F-actin s...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Background: Chondrocytes are the main cellular component of articular cartilage. In healthy tissue, ...
Chondrocytes are the only cell type found in human cartilage consisting of proteoglycans and type II...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal disorganization...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Real and simulated microgravity induce a variety of changes in human cells. Most importantly, change...
Background: Chondrocytes are the main cellular component of articular cartilage. In healthy tissue, ...
Chondrocytes are the only cell type found in human cartilage consisting of proteoglycans and type II...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal disorganization...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...
Background: Endothelial cells (EC) cultured under altered gravity conditions show a cytoskeletal dis...