Abstract
We have developed a bilayered dermal-epidermal scaffold for application in the treatment of full-thickness skin defects. The dermal component gels in situ and adapts to the lesion shape, delivering human dermal fibroblasts in a matrix of fibrin and cross-linked hyaluronic acid modified with a cell adhesionpromoting peptide. Fibroblasts were able to form a tridimensional matrix due to material features such as tailored mechanical properties, presence of protease-degradable elements and cell-binding ligands. The epidermal component is a robust membrane containing cross-linked hyaluronic acid and poly- L-lysine, on which keratinocytes were able to attach and to form a monolayer. Amine-aldehyde bonding at the interface between the two components allows the formation of a tightly bound composite scaffold. Both parts of the scaffold were designed to provide cell-type-specific cues to allow for cell proliferation and form a construct that mimics the skin environment.
Author supplied keywords
Cite
CITATION STYLE
Monteiro, I. P., Gabriel, D., Timko, B. P., Hashimoto, M., Karajanagi, S., Tong, R., … Kohane, D. S. (2014). A two-component pre-seeded dermal-epidermal scaffold. Acta Biomaterialia, 10(12), 4928–4938. https://doi.org/10.1016/j.actbio.2014.08.029
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.