Papillary and reticular fibroblasts generate distinct microenvironments that differentially impact angiogenesis

乳头状成纤维细胞和网状成纤维细胞产生不同的微环境,对血管生成产生不同的影响

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作者:Adèle Mauroux, Pauline Joncour, Noémie Brassard-Jollive, Hisoilat Bacar, Benjamin Gillet, Sandrine Hughes, Corinne Ardidie-Robouant, Laëtitia Marchand, Athanasia Liabotis, Philippe Mailly, Catherine Monnot, Stéphane Germain, Sylvie Bordes, Brigitte Closs, Florence Ruggiero, Laurent Muller

Significance

Recent advances have brought to the forefront the central role of microenvironment and vascularization in tissue engineering for regenerative medicine and microtissue modelling. We have investigated the role of papillary and reticular fibroblast subpopulations using scaffold-free cell sheet culture. This approach provides differentiated cells conditions allowing the production of their own microenvironment. Analysis of gene expression profiles and characterisation of the matrix produced revealed strong and specific angiogenic properties that we functionally characterized using 3D angiogenesis models targeting the respective role of either secreted or matrix-bound factors. This study demonstrates the importance of cell-generated extracellular matrix and questions the importance of cell source and the relevance of hydrogels for developing physio-pathologically relevant tissue engineered substitutes.

Statement of significance

Recent advances have brought to the forefront the central role of microenvironment and vascularization in tissue engineering for regenerative medicine and microtissue modelling. We have investigated the role of papillary and reticular fibroblast subpopulations using scaffold-free cell sheet culture. This approach provides differentiated cells conditions allowing the production of their own microenvironment. Analysis of gene expression profiles and characterisation of the matrix produced revealed strong and specific angiogenic properties that we functionally characterized using 3D angiogenesis models targeting the respective role of either secreted or matrix-bound factors. This study demonstrates the importance of cell-generated extracellular matrix and questions the importance of cell source and the relevance of hydrogels for developing physio-pathologically relevant tissue engineered substitutes.

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