Increase in fluidity in the membrane of MT3 breast cancer cells correlates with enhanced cell adhesion in vitro and increased lung metastasis in NOD/SCID mice

To study whether membrane fluidity of tumor cells have an influence on metastasis, MT3 breast cancer cells harvested during exponential growth and under confluent conditions were compared. Electron paramagnetic resonance (EPR) data revealed that, in comparison to growing cells, confluent cells have...

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Veröffentlicht in:Archives of biochemistry and biophysics 2007-03, Vol.459 (1), p.98-106
Hauptverfasser: Zeisig, Reiner, Koklič, Tilen, Wiesner, Burkhard, Fichtner, Iduna, Sentjurč, Marjeta
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container_title Archives of biochemistry and biophysics
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creator Zeisig, Reiner
Koklič, Tilen
Wiesner, Burkhard
Fichtner, Iduna
Sentjurč, Marjeta
description To study whether membrane fluidity of tumor cells have an influence on metastasis, MT3 breast cancer cells harvested during exponential growth and under confluent conditions were compared. Electron paramagnetic resonance (EPR) data revealed that, in comparison to growing cells, confluent cells have a significant higher fluidity in their membrane related to a higher relative portion of disordered domains and a reduced portion of the most ordered domains. Further, sialyl Lewis X and/or A ligand-mediated adhesion of these cells was 2-fold enhanced. Confocal laser scanning microscopy further demonstrated a higher motility of ligands in the membrane of confluent cells, together with an accumulation of these ligands in distinct areas. Both facts are suggested to be responsible for an enhanced cell adhesion observed. Finally, an increased number of large distinct metastatic foci was registered in lungs of mice after i.v. inoculation of confluent cells. The results indicate that domain organization and fluidity of the cell membrane affect tumor cell adhesion and can have in this way also an impact on the malignancy of breast cancer cells.
doi_str_mv 10.1016/j.abb.2006.09.030
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subjects Animals
Breast Neoplasms - pathology
Breast Neoplasms - physiopathology
Breast Neoplasms - secondary
Cell Adhesion
Cell Line, Tumor
Cell membrane
Domain formation
Fluidity
Humans
Membrane Fluidity
Metastasis
Mice
Mice, Inbred NOD
Mice, SCID
Neoplasm Invasiveness
Statistics as Topic
title Increase in fluidity in the membrane of MT3 breast cancer cells correlates with enhanced cell adhesion in vitro and increased lung metastasis in NOD/SCID mice
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