Fibroblast remodeling of adsorbed collagen type IV is altered in contact with cancer cells

L Maneva-Radicheva, U Ebert, N Dimoudis… - Histology and …, 2008 - digitum.um.es
L Maneva-Radicheva, U Ebert, N Dimoudis, G Altankov
Histology and histopathology, 2008digitum.um.es
A series of co-culture experiments between fibroblasts and H-460 human lung carcinoma
cells were performed to learn more about the fate of adsorbed type IV collagen (Coll IV).
Fibroblasts were able to spatially rearrange Coll IV in a specific linear pattern, similar but not
identical to the fibronectin (FN) fibrils. Coll IV partly co-aligns with fibroblast actin
cytoskeleton and transiently co-localize with FN, as well as with ß1 and a2 integrin clusters,
suggesting a cell-dependent process. We further found that this Coll IV reorganization is …
A series of co-culture experiments between fibroblasts and H-460 human lung carcinoma cells were performed to learn more about the fate of adsorbed type IV collagen (Coll IV). Fibroblasts were able to spatially rearrange Coll IV in a specific linear pattern, similar but not identical to the fibronectin (FN) fibrils. Coll IV partly co-aligns with fibroblast actin cytoskeleton and transiently co-localize with FN, as well as with ß1 and a2 integrin clusters, suggesting a cell-dependent process. We further found that this Coll IV reorganization is suppressed in contact with H460 cells. Zymography revealed strongly elevated MMP-2 activity in supernatants of co-cultures, but no activity when fibroblasts or cancer cells were cultured alone. Thus, we provide evidence that reorganization of substrate associated Coll IV is a useful morphological approach for in vitro studies on matrix remodeling activity during tumorigenesis.
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