Polymers for Advanced Technologies · 2007 · 11 citations · 37 references
Tissue EngineeringEngineeringBiomimetic MaterialsBiomaterials DesignBiofabricationBiomedical EngineeringAbstract Cellular‐compatible ScaffoldsChitosan ScaffoldsRegenerative MedicineOrthopaedic BiomaterialsElectron MicroscopyRegenerative BiomaterialsMatrix BiologyRegenerative EngineeringFunctional Tissue EngineeringBiofunctional MaterialThree‐dimensional Chitosan ScaffoldsHard Tissue EngineeringWound HealingMedicineBiomaterialsBiocompatible Material
Abstract Cellular‐compatible scaffolds were prepared using a three‐dimensional micro‐porous chitosan (CS) non‐woven fabric immobilized by glutaraldehyde (GA), followed by the immobilization of chondroitin‐6‐sulfate (ChS). To characterize the immobilizing process, tensile analysis, and scanning electron microscopy (SEM) were performed. The cell seeding efficiency and proliferation test were evaluated using L929 fibroblasts. The chitosan scaffolds showed high water vapor transmission rate and antibacterial activity. In addition, ChS‐immobilized scaffolds exhibited higher cell seeding efficiency and fibroblasts proliferation. These results demonstrated that the CS non‐woven fabrics grafted with GA and immobilized with ChS could be an appropriate candidate for wound healing and artificial scaffolds in the clinical applications. Copyright © 2007 John Wiley & Sons, Ltd.
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Scaffolds in tissue engineering bone and cartilage
Dietmar W. Hutmacher · Biomaterials · 2000 · 4.9K citations
Culture of Animal Cells: A Manual of Basic Technique
Food and Chemical Toxicology · 1985 · 1.3K citations · Full text