| Literature DB >> 28289615 |
Hajar Shafaei1, Hajar Bagernezhad2, Hassan Bagernajad1.
Abstract
BACKGROUND: Dedifferentiation of chondrocytes remains a major problem for cartilage tissue engineering. Chondrocytes loss differentiated phenotype in in vitro culture that is undesired for repair strategies. The chondrocyte is surrounded by a pericellular matrix (PCM), together forming the chondron. PCM has a positive effect on the maintenance of chondrocyte phenotype during culture in comparison to uncovered chondrocyte. Studies suggest that the PCM influence on functional properties of the chondrocytes. However there is no study to show gene expression phenotype differences between round chondron and fibroblastic chondrocytes. We aimed to investigate the effect of pericellular matrix in maintaining of chondrogenic gene expression to solve dedifferentiation problem of chondrocyte.Entities:
Keywords: Cartilage tissue engineering; Chondron; Condrocyte; Dedifferentiation; PCM
Year: 2017 PMID: 28289615 PMCID: PMC5339611
Source DB: PubMed Journal: World J Plast Surg ISSN: 2228-7914
: Real-time RT PCR primers used in this study
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| 18SR | 5’- GTAACCCGTTGAACCCCATT- 3’ | 153 |
| 18SF | 5’- CCATCCAATCGGTAGTAGCG 3’ | |
| Col10F | 5’-CACTACCCAACACCAAGACA-3’ | 225 |
| Col10R | 5’- CTGGTTTCCCTACAGCTGAT-3’ | |
| Sox9F | 5’-CCCAACGCCATCTTCAAGG-3’ | 242 |
| Sox9R | 5’-CTGCTCAGCTCGCCGATGT-3’ | |
| AGGF | 5’-CAACTACCCGGCCATCC-3’ | 160 |
| AGGR | 5’-GATGGCTCTGTAATGGAACAC-3’ | |
| Col1F | 5’-AAGCCGAATTCCTGGTCT-3’ | 195 |
| Col1R | 5’- TCCAACGAGATCGAGATCC-3’ | |
| Runx2F | 5′ -ATGCTTCATTCGCCTCAC-3′ | 156 |
| Runx2R | 5′- ACTGCTTGCAGCCTTAAAT-3’ | |
| MMP13F | 5’-GGAGCATGGCGACTTCTAC-3’ | 208 |
| MMP13R | 5’-GAGTGCTCCAGGGTCCTT-3’ | |
| ALPF | 5’-CCCACAATGTGGACTACCT-3’ | 143 |
| ALPR | 5’-GAAGCCTTTGGGGTTCTTC-3’ | |
| COMPF | 5-’ AACGCGGCGCTGCAGGAC-3’ | 246 |
| COMPR | 5’–CGAGCCGTTGCCCGTGAAG-3’ |
Bp: Base pair; F: Forward; R: Reverse 18s as housekeeping gene; Col10: Collagen type 10; Sox9: SRY (sex determining region Y)-box 9; AGG: Aggrecan; Col1: Collagen type I; Runx2: Runt-related transcription factor-2; MMP13: Matrix metalloproteinase-13; ALP: Alkaline phosphatase; COMP: Cartilage oligomeric matrix protein; Link P: Link protein
Fig. 1Micrographs showing chondrons at day 7. A) Attached and floated chondrons by inverted microscope. B) Alcian blue staining showing proteoglycan around round cells (arrow) and attached cells
Fig. 2:Chondrogenic gene expression Sox9, AGG ،Col2A, COMP, Link P, MMP13, Runx2, Col1, ALP, Col10 in attached and float chondrons at day 7. A) Sox9 gene expression in attached and float chondrons at day 7. High gene expression of Sox9 in float chondrons versus attached chondrons (p<0.05). (B) Col2A gene expression in attached and float chondrons at day 7C). AGG gene expression in attached and float chondrons at day 7. D) Link P gene expression in attached and float chondrons at day 7. E) COMP gene expression in attached and float chondrons at day 7.