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A 3D in vitro model to explore the inter-conversion between epithelial and mesenchymal states during EMT and its reversion.

Sci Rep. 2016; 
Bidarra SJ,, Oliveira P,, Rocha S,, Saraiva DP,, Oliveira C,,, Barrias CC,,.
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Peptide Synthesis 4 mg per g of alginate) were sequen- tially added at a molar ratio of 1:2, followed by 100 mg of RGD peptide (Genscript) per g of alginate.... Subsequent ly, samples were incubated w ith the fol low ing pr imar y ant ibodies : rabbit anti-mouse E-cadherin (Cell Signaling, 1:100, 2 hours at RT); rabbit anti-mouse fibronectin (Sigma, 1:100, ON at 4 °C) and rabbit anti-mouse vimentin (GenScript, 1:100, overnight at 4 °C). Get A Quote

摘要

Epithelial-to-mesenchymal transitions (EMT) are strongly implicated in cancer dissemination. Intermediate states, arising from inter-conversion between epithelial (E) and mesenchymal (M) states, are characterized by phenotypic heterogeneity combining E and M features and increased plasticity. Hybrid EMT states are highly relevant in metastatic contexts, but have been largely neglected, partially due to the lack of physiologically-relevant 3D platforms to study them. Here we propose a new in vitro model, combining mammary E cells with a bioengineered 3D matrix, to explore phenotypic and functional properties of cells in transition between E and M states. Optimized alginate-based 3D matrices provided adequate 3D ... More

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