| Literature DB >> 24184178 |
Birgit Hoyer1, Anne Bernhardt2, Anja Lode2, Sascha Heinemann3, Judith Sewing4, Matthias Klinger5, Holger Notbohm6, Michael Gelinsky2.
Abstract
Porous scaffolds were engineered from refibrillized collagen of the jellyfish Rhopilema esculentum for potential application in cartilage regeneration. The influence of collagen concentration, salinity and temperature on fibril formation was evaluated by turbidity measurements and quantification of fibrillized collagen. The formation of collagen fibrils with a typical banding pattern was confirmed by atomic force microscopy and transmission electron microscopy analysis. Porous scaffolds from jellyfish collagen, refibrillized under optimized conditions, were fabricated by freeze-drying and subsequent chemical cross-linking. Scaffolds possessed an open porosity of 98.2%. The samples were stable under cyclic compression and displayed an elastic behavior. Cytotoxicity tests with human mesenchymal stem cells (hMSCs) did not reveal any cytotoxic effects of the material. Chondrogenic markers SOX9, collagen II and aggrecan were upregulated in direct cultures of hMSCs upon chondrogenic stimulation. The formation of typical extracellular matrix components was further confirmed by quantification of sulfated glycosaminoglycans.Entities:
Keywords: Chondrogenic differentiation; Fibril formation; Jellyfish; Marine collagen; Mesenchymal stem cells
Mesh:
Substances:
Year: 2013 PMID: 24184178 DOI: 10.1016/j.actbio.2013.10.022
Source DB: PubMed Journal: Acta Biomater ISSN: 1742-7061 Impact factor: 8.947