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Immobilized Fibrinogen in PEG Hydrogels Does not Improve Chondrocyte-Mediated Matrix Deposition in Response to Mechanical Stimulation
mechanotransduction compressive strain poly(ethylene glycol) bioreactor cartilage
2010/1/7
The present investigation aims to explore the
role of cell-scaffold interactions and whole cell compression
in chondrocyte mechanotransduction using encapsulating
poly(ethylene glycol) (PEG) hydrog...
The effect of structural alterations of PEG-fibrinogen hydrogel scaffolds on 3-D cellular morphology and cellular migration
Tissue engineering Biosynthetic Fibrin Smooth muscle cells Polyethylene glycol
2010/1/7
The need for alternative scaffolds in tissue engineering has motivated the establishment of advanced biomaterial technologies based on
biosynthetic polymers. Networks of synthetic and biologic buildi...
Biosynthetic hydrogel scaffolds made from fibrinogen and polyethylene glycol for 3D cell cultures
Scaffold Polyethylene glycol Hydrogel Mechanical properties Tissue engineering
2010/1/7
Tissue engineering scaffolds are fabricated from either biological materials, which provide biofunctional signals and interact well
with cells, or from synthetic polymers, which provide precise contr...