Epidermal growth factor-induced cell rounding is sensitive to simulated microgravity

Rijken, P.J.; de Groot, R.P.; Briegleb, W.; Kruijer, W.; Verkleij, A.J.; Boonstra, J.; de Laat, S.W.

Aviation Space and Environmental Medicine 62(1): 32-36

1991


ISSN/ISBN: 0095-6562
PMID: 1996929
Document Number: 384689
Epidermal growth factor (EGF) induces rapid rounding of A431 human epidermoid carcinoma cells. This process is dependent upon temperature and EGF concentration. To investigate the possible influence of gravity variations on EGF-induced cell rounding of A431 cells, experiments were performed using a fast-rotating clinostat and centrifuge, thereby simulating microgravity and higher gravity values, respectively. We demonstrated that simulated microgravity conditions enhance EGF-induced cell rounding significantly, whereas hypergravity values do not show significant effects on this process. These results suggest that simulated microgravity modulates growth factor-induced signal transduction.

Document emailed within 1 workday
Secure & encrypted payments