Design and dynamic culture of 3D-scaffolds for cartilage tissue engineering

From National Research Council Canada

DOIResolve DOI: https://doi.org/10.1177/0885328209355332
AuthorSearch for: 1; Search for: 1; Search for: 1; Search for: 1; Search for:
Affiliation
  1. National Research Council of Canada. NRC Industrial Materials Institute
FormatText, Article
SubjectCartilage repair; Cartilage tissue engineering; Cell attachments; Cell viability; Chondrocytes; Compressive strain; Culture conditions; Different pore sizes; Dynamic cell cultures; Dynamic loadings; Healthy tissues; In-cell; In-vitro; Interconnected pore networks; Loading condition; Macroporous; Poly-L-lactide; Porogen leaching; Porogens; Scaffold properties; solid freeform fabrication; Static and dynamic loading; Static conditions; Body fluids; Bromine compounds; Cartilage; Cell culture; Dynamic loads; Growth kinetics; Leaching; Loading; Microporosity; Optimization; Organic polymers; Pore size; Scanning electron microscopy; Three dimensional; Tissue engineering; Scaffolds; biomaterial; biomimetic material; tissue scaffold; articular cartilage; biomechanics; cartilage cell; cattle; cell adhesion; cell survival; cytology; dog; in vitro study; male; materials testing; methodology; physiology; porosity; scanning electron microscopy; tissue engineering; Biocompatible Materials; Biomechanics; Biomimetic Materials; Cartilage, Articular; Cattle; Cell Adhesion; Cell Survival; Chondrocytes; Dogs; Male; Materials Testing; Microscopy, Electron, Scanning; Porosity; Tissue Engineering; Tissue Scaffolds
Abstract
Publication date
In
LanguageEnglish
Peer reviewedYes
NPARC number21271591
Export citationExport as RIS
Report a correctionReport a correction (opens in a new tab)
Record identifierdbc2532b-794a-434b-9809-a177e54bb43f
Record created2014-03-24
Record modified2020-04-21
Date modified: