Proteolysis during tumor cell extravasation in vitro: metalloproteinase involvement across tumor cell types.
To test if proteolysis is involved in tumor cell extravasation, we developed an in vitro model where tumor cells cross an endothelial monolayer cultured on a basement membrane. Using this model we classified the ability of the cells to transmigrate through the endothelial cell barrier onto the under...
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doaj-e1a0e073742d46d9bb34c74b8037ce042020-11-24T21:11:03ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01810e7841310.1371/journal.pone.0078413Proteolysis during tumor cell extravasation in vitro: metalloproteinase involvement across tumor cell types.Evelyn B VouraJane L EnglishHoi-Ying E YuAndrew T HoPatrick SubarskyRichard P HillCarlo V HojillaRama KhokhaTo test if proteolysis is involved in tumor cell extravasation, we developed an in vitro model where tumor cells cross an endothelial monolayer cultured on a basement membrane. Using this model we classified the ability of the cells to transmigrate through the endothelial cell barrier onto the underlying matrix, and scored this invasion according to the stage of passage through the endothelium. Metalloproteinase inhibitors reduced tumor cell extravasation by at least 35%. Visualization of protease and cell adhesion molecules by confocal microscopy demonstrated the cell surface localization of MMP-2, MMP-9, MT1-MMP, furin, CD44 and αvβ3, during the process of transendothelial migration. By the addition of inhibitors and bio-modulators we assessed the functional requirement of the aforementioned molecules for efficient migration. Proteolytic digestion occurred at the cell-matrix interface and was most evident during the migratory stage. All of the inhibitors and biomodulators affected the transition of the tumor cells into the migratory stage, highlighting the most prevalent use of proteolysis at this particular step of tumor cell extravasation. These data suggest that a proteolytic interface operates at the tumor cell surface within the tumor-endothelial cell microenvironment.http://europepmc.org/articles/PMC3806793?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Evelyn B Voura Jane L English Hoi-Ying E Yu Andrew T Ho Patrick Subarsky Richard P Hill Carlo V Hojilla Rama Khokha |
spellingShingle |
Evelyn B Voura Jane L English Hoi-Ying E Yu Andrew T Ho Patrick Subarsky Richard P Hill Carlo V Hojilla Rama Khokha Proteolysis during tumor cell extravasation in vitro: metalloproteinase involvement across tumor cell types. PLoS ONE |
author_facet |
Evelyn B Voura Jane L English Hoi-Ying E Yu Andrew T Ho Patrick Subarsky Richard P Hill Carlo V Hojilla Rama Khokha |
author_sort |
Evelyn B Voura |
title |
Proteolysis during tumor cell extravasation in vitro: metalloproteinase involvement across tumor cell types. |
title_short |
Proteolysis during tumor cell extravasation in vitro: metalloproteinase involvement across tumor cell types. |
title_full |
Proteolysis during tumor cell extravasation in vitro: metalloproteinase involvement across tumor cell types. |
title_fullStr |
Proteolysis during tumor cell extravasation in vitro: metalloproteinase involvement across tumor cell types. |
title_full_unstemmed |
Proteolysis during tumor cell extravasation in vitro: metalloproteinase involvement across tumor cell types. |
title_sort |
proteolysis during tumor cell extravasation in vitro: metalloproteinase involvement across tumor cell types. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2013-01-01 |
description |
To test if proteolysis is involved in tumor cell extravasation, we developed an in vitro model where tumor cells cross an endothelial monolayer cultured on a basement membrane. Using this model we classified the ability of the cells to transmigrate through the endothelial cell barrier onto the underlying matrix, and scored this invasion according to the stage of passage through the endothelium. Metalloproteinase inhibitors reduced tumor cell extravasation by at least 35%. Visualization of protease and cell adhesion molecules by confocal microscopy demonstrated the cell surface localization of MMP-2, MMP-9, MT1-MMP, furin, CD44 and αvβ3, during the process of transendothelial migration. By the addition of inhibitors and bio-modulators we assessed the functional requirement of the aforementioned molecules for efficient migration. Proteolytic digestion occurred at the cell-matrix interface and was most evident during the migratory stage. All of the inhibitors and biomodulators affected the transition of the tumor cells into the migratory stage, highlighting the most prevalent use of proteolysis at this particular step of tumor cell extravasation. These data suggest that a proteolytic interface operates at the tumor cell surface within the tumor-endothelial cell microenvironment. |
url |
http://europepmc.org/articles/PMC3806793?pdf=render |
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