International audienceEmbryonic developmental studies under microgravity conditions in space are very limited. To study the effects of short-term altered gravity on embryonic development processes, we exposed mouse embryonic stem cells (mESCs) to phases of hypergravity and microgravity and studied the differentiation potential of the cells using wide-genome microarray analysis. During the 64th European Space Agency's parabolic flight campaign, mESCs were exposed to 31 parabolas. Each parabola comprised phases lasting 22 s of hypergravity, microgravity, and a repeat of hypergravity. On different parabolas, RNA was isolated for microarray analysis. After exposure to 31 parabolas, mESCs (P31 mESCs) were further differentiated under normal grav...
This study focused on the effects of short-term microgravity (22 s) on the gene expression and morph...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
International audienceEmbryonic developmental studies under microgravity conditions in space are ver...
Background/Aims: Embryonic developmental studies under microgravity conditions in space are very lim...
Murine embryonic stem cells (ESCs) were exposed to simulated microgravity using the principle of a f...
Mechanical unloading in microgravity is thought to induce tissue degeneration by various mechanisms,...
The in vitro differentiation of pluripotent stem cells partially recapitulates early in vivo embryon...
There have been many studies on the biological effects of simulated microgravity (SMG) on differenti...
Microgravity influences cell differentiation by modifying the morphogenetic field in which stem cell...
Gravity is an omnipresent force on Earth, and all living organisms have evolved under the influence ...
Understanding how stem cells adapt to space flight conditions is fundamental for human space mission...
Forces generated by gravity have a profound impact on the behavior of cells in tissues affecting the...
We analyzed the morphology and the transcriptomic changes of human neural stem progenitor cells (hNS...
This study aimed to assess the effects of simulated microgravity on mouse embryonic fibroblast (MEF)...
This study focused on the effects of short-term microgravity (22 s) on the gene expression and morph...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
International audienceEmbryonic developmental studies under microgravity conditions in space are ver...
Background/Aims: Embryonic developmental studies under microgravity conditions in space are very lim...
Murine embryonic stem cells (ESCs) were exposed to simulated microgravity using the principle of a f...
Mechanical unloading in microgravity is thought to induce tissue degeneration by various mechanisms,...
The in vitro differentiation of pluripotent stem cells partially recapitulates early in vivo embryon...
There have been many studies on the biological effects of simulated microgravity (SMG) on differenti...
Microgravity influences cell differentiation by modifying the morphogenetic field in which stem cell...
Gravity is an omnipresent force on Earth, and all living organisms have evolved under the influence ...
Understanding how stem cells adapt to space flight conditions is fundamental for human space mission...
Forces generated by gravity have a profound impact on the behavior of cells in tissues affecting the...
We analyzed the morphology and the transcriptomic changes of human neural stem progenitor cells (hNS...
This study aimed to assess the effects of simulated microgravity on mouse embryonic fibroblast (MEF)...
This study focused on the effects of short-term microgravity (22 s) on the gene expression and morph...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...
Extracellular matrix proteins, adhesion molecules, and cytoskeletal proteins form a dynamic network ...