Mechanical and biochemical characterization of cartilage explants in serum-free culture
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Influence of chondroitin sulfate on the biochemical, mechanical and frictional properties of cartilage explants in long-term cultureChondrocyte viability is higher after prolonged storage at 37 degrees C than at 4 degrees C for osteochondral graftsEffects of dexamethasone on the functional properties of cartilage explants during long-term cultureThe effect of dexamethasone and triiodothyronine on terminal differentiation of primary bovine chondrocytes and chondrogenically differentiated mesenchymal stem cells.Response of engineered cartilage to mechanical insult depends on construct maturityPassage-dependent relationship between mesenchymal stem cell mobilization and chondrogenic potential.Effects of corticosteroids and their combinations with hyaluronanon on the biochemical properties of porcine cartilage explants.A novel macroporous polyvinyl alcohol scaffold promotes chondrocyte migration and interface formation in an in vitro cartilage defect model.Cytokine preconditioning of engineered cartilage provides protection against interleukin-1 insult.Repeated measurement of mechanical properties in viable osteochondral explants following a single blunt impact injuryInfluence of temporary chondroitinase ABC-induced glycosaminoglycan suppression on maturation of tissue-engineered cartilageRole of insulin-transferrin-selenium in auricular chondrocyte proliferation and engineered cartilage formation in vitroComposite three-dimensional woven scaffolds with interpenetrating network hydrogels to create functional synthetic articular cartilage.Effects of cartilage impact with and without fracture on chondrocyte viability and the release of inflammatory markers.Genipin enhances the mechanical properties of tissue-engineered cartilage and protects against inflammatory degradation when used as a medium supplement.Optimum combination of insulin-transferrin-selenium and fetal bovine serum for culture of rabbit articular chondrocytes in three-dimensional alginate scaffolds.The effect of chemically defined medium on spontaneous calcium signaling of in situ chondrocytes during long-term culture.Minimal mechanical load and tissue culture conditions preserve native cell phenotype and morphology in tendon-a novel ex vivo mouse explant model.Tissue-engineered larynx using perfusion-decellularized technique and mesenchymal stem cells in a rabbit modelThe MEK-ERK1/2 signaling pathway regulates hyaline cartilage formation and the redifferentiation of dedifferentiated chondrocytes in vitro
P2860
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P2860
Mechanical and biochemical characterization of cartilage explants in serum-free culture
description
2008 nî lūn-bûn
@nan
2008年の論文
@ja
2008年論文
@yue
2008年論文
@zh-hant
2008年論文
@zh-hk
2008年論文
@zh-mo
2008年論文
@zh-tw
2008年论文
@wuu
2008年论文
@zh
2008年论文
@zh-cn
name
Mechanical and biochemical characterization of cartilage explants in serum-free culture
@ast
Mechanical and biochemical characterization of cartilage explants in serum-free culture
@en
type
label
Mechanical and biochemical characterization of cartilage explants in serum-free culture
@ast
Mechanical and biochemical characterization of cartilage explants in serum-free culture
@en
prefLabel
Mechanical and biochemical characterization of cartilage explants in serum-free culture
@ast
Mechanical and biochemical characterization of cartilage explants in serum-free culture
@en
P2093
P2860
P1476
Mechanical and biochemical characterization of cartilage explants in serum-free culture
@en
P2093
A M Stoker
D Y Williams
G A Ateshian
S L Angione
P2860
P304
P356
10.1016/J.JBIOMECH.2008.01.026
P577
2008-01-01T00:00:00Z