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Deciphering the relative roles of matrix metalloproteinase- and plasmin-mediated matrix degradation during capillary morphogenesis using engineered hydrogels.

J. Biomed. Mater. Res. Part B Appl. Biomater.. 2019; 
BeamishJeffrey A,JuliarBenjamin A,ClevelandDavid S,BuschMegan E,NimmagaddaLikitha,PutnamAndr
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Catalog Peptides … VS hydrogel formation Hydrogels were formed from 4-arm poly(ethylene glycol) vinyl sulfone (PEG-VS; 20 kDa, Jenkem USA, Allen TX … Immediately before use, PEG-VS was dissolved in HEPES (100 mM, pH 8.4) and CGRGDS pep- tide (RGD, Genscript, Piscataway, NJ) was … Get A Quote

摘要

Extracellular matrix (ECM) remodeling is essential for the process of capillary morphogenesis. Here we employed synthetic poly(ethylene glycol) (PEG) hydrogels engineered with proteolytic specificity to either matrix metalloproteinases (MMPs), plasmin, or both to investigate the relative contributions of MMP- and plasmin-mediated ECM remodeling to vessel formation in a 3D-model of capillary self-assembly analogous to vasculogenesis. We first demonstrated a role for both MMP- and plasmin-mediated mechanisms of ECM remodeling in an endothelial-fibroblast co-culture model of vasculogenesis in fibrin hydrogels using inhibitors of MMPs and plasmin. When this co-culture model was employed in engineered PEG hydrog... More

关键词

capillary morphogenesis,fibrin,matrix metalloproteinase,plasmin,poly(ethylene gly