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Differential effect of ECM molecules on re-expression of cartilaginous markers in near quiescent human chondrocytes
- Source :
- Journal of cellular physiology. 226(8)
- Publication Year :
- 2011
-
Abstract
- The limited source of healthy primary chondrocytes restricts the clinical application of tissue engineering for cartilage repair. Therefore, method to maintain or restore the chondrocyte phenotype during in vitro expansion is essential. The objective of this study is to establish the beneficial effect of ECM molecules on restoring the re-expression of cartilaginous markers in primary human chondrocytes after extensive monolayer expansion. During the course of chondrocyte serial expansion, COL2A1, SOX9, and AGN mRNA expression levels, and GAG accumulation level were reduced significantly in serially passaged cells. Exogenous type II collagen dose-dependently elevated GAG level and induced the re-expression of cartilaginous marker mRNAs in P7 chondrocytes. Chondroitin sulfate did not show significant effect on P7 chondrocytes, while hyaluronic acid inhibited the expression of SOX9 and AGN mRNAs. Upon treatment with type II collagen, FAK, ERK1/2, and JNK were activated via phosphorylation in P7 chondrocytes within 15 min. Furthermore, GFOGER integrin blocking peptide, MEK inhibitor and JNK inhibitor, not p38 inhibitor, significantly reduced the type II collagen-induced GAG deposition level. Finally, in the presence of TGF-β1 and IGF-I, P7 chondrocytes cultured in 3D type II collagen matrix exhibited better cartilaginous features than those cells cultured in the type I collagen matrix. In conclusion, type II collagen alone can effectively restore cartilaginous features of expanded P7 human chondrocytes. It is probably mediated via the activation of FAK-ERK1/2 and FAK-JNK signaling pathways. The potential application of type II collagen in expanding a scarcity of healthy chondrocytes in vitro for further tissue engineering is implicated. J. Cell. Physiol. 226: 1981–1988, 2011. © 2010 Wiley-Liss, Inc.
- Subjects :
- Cartilage, Articular
Integrins
Physiology
MAP Kinase Kinase 4
Clinical Biochemistry
Integrin
Type II collagen
Matrix (biology)
Chondrocyte
chemistry.chemical_compound
Chondrocytes
Tissue engineering
Transforming Growth Factor beta
medicine
Animals
Humans
Chondroitin sulfate
Hyaluronic Acid
Insulin-Like Growth Factor I
Collagen Type II
Cells, Cultured
Extracellular Matrix Proteins
biology
Tissue Engineering
Chondroitin Sulfates
SOX9 Transcription Factor
Cell Biology
MAP Kinase Kinase Kinases
Cell biology
Rats
Collagen, type I, alpha 1
medicine.anatomical_structure
chemistry
Biochemistry
biology.protein
Type I collagen
Biomarkers
Subjects
Details
- ISSN :
- 10974652
- Volume :
- 226
- Issue :
- 8
- Database :
- OpenAIRE
- Journal :
- Journal of cellular physiology
- Accession number :
- edsair.doi.dedup.....75182963e1900a81001b1d779e3f2ece