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Scientific Reports|November 19, 2015
Mechanisms of three-dimensional growth of thyroid cells during long-term simulated microgravitySascha Kopp, Elisabeth Warnke, Markus Wehland, et al.
Tissue Engineering. Part B, Reviews|March 7, 2014
Growing tissues in real and simulated microgravity: new methods for tissue engineeringDaniela Grimm, Markus Wehland, Jessica Pietsch, et al.
Cell Communication and Signaling : CCS|June 3, 2014
Spheroid formation of human thyroid cancer cells under simulated microgravity: a possible role of CTGF and CAV1Elisabeth Warnke, Jessica Pietsch, Markus Wehland, et al.
Proteomics|May 2, 2015
Identification of proteins involved in inhibition of spheroid formation under microgravityStefan Riwaldt, Jessica Pietsch, Albert Sickmann, et al.
International Journal of Molecular Sciences|May 30, 2019
Fighting Thyroid Cancer with Microgravity ResearchMarcus Krüger, Daniela Melnik, Sascha Kopp, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|February 15, 2015
Moderate alterations of the cytoskeleton in human chondrocytes after short-term microgravity produced by parabolic flight maneuvers could be prevented by up-regulation of BMP-2 and SOX-9Ganna Aleshcheva, Markus Wehland, Jayashree Sahana, et al.
International Journal of Molecular Sciences|July 27, 2022
In Prostate Cancer Cells Cytokines Are Early Responders to Gravitational Changes Occurring in Parabolic FlightsHerbert Schulz, Dorothea Dietrichs, Markus Wehland, et al.
Scientific Reports|August 17, 2019
Morphological and Molecular Changes in Juvenile Normal Human Fibroblasts Exposed to Simulated MicrogravityChristoph Buken, Jayashree Sahana, Thomas J Corydon, et al.
Stem Cells and Development|March 30, 2018
Tissue Engineering Under Microgravity Conditions-Use of Stem Cells and Specialized CellsDaniela Grimm, Marcel Egli, Marcus Krüger, et al.
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