ZERO WORLD RESEARCHLiterature database on amino acids & organic acids

The properties of bioengineered chondrocyte sheets for cartilage regeneration.

BMC biotechnology2009Mitani G, Sato M, Lee JI, et al.
Study designOther primary literature
SubjectHuman

Record checks

Study design
Other primary literature
Subject
Human
Publication year
2009
Source
doi.org
Abstract display
Shown here
Publication status
Active
Status checked
17 Aug 2026
Collected
4 Aug 2026
Freshness
Current
Review stage
Automated
Record status
Published

Abstract

Background: Although the clinical results of autologous chondrocyte implantation for articular cartilage defects have recently improved as a result of advanced techniques based on tissue engineering procedures, problems with cell handling and scaffold imperfections remain to be solved. A new cell-sheet technique has been developed, and is potentially able to overcome these obstacles. Chondrocyte sheets applicable to cartilage regeneration can be prepared with this cell-sheet technique using temperature-responsive culture dishes. However, for clinical application, it is necessary to evaluate the characteristics of the cells in these sheets and to identify their similarities to naive cartilage.Results: The expression of SOX 9, collagen type 2, 27, integrin alpha 10, and fibronectin genes in triple-layered chondrocyte sheets was significantly increased in comparison to those in conventional monolayer culture and in a single chondrocyte sheet, implying a nature similar to ordinary cartilage. In addition, immunohistochemistry demonstrated that collagen type II, fibronectin, and integrin alpha 10 were present in the triple-layered chondrocyte sheets.Conclusion: The results of this study indicate that these chondrocyte sheets with a consistent cartilaginous phenotype and adhesive properties may lead to a new strategy for cartilage regeneration.

MeSH

AdolescentAdultCartilage, ArticularCells, CulturedChondrocytesCollagen Type IIFemaleFibronectinsGene ExpressionHumansIntegrin alpha ChainsMaleMicroscopy, Electron, ScanningMiddle AgedRegenerationSOX9 Transcription FactorTissue EngineeringYoung Adult

DOI 10.1186/1472-6750-9-17

PMID 19267909

View source →