4.5 Article

DETECTION OF ABNORMALITIES IN THE SUPERFICIAL ZONE OF CARTILAGE REPAIRED USING A TISSUE ENGINEERED CONSTRUCT DERIVED FROM SYNOVIAL STEM CELLS

期刊

EUROPEAN CELLS & MATERIALS
卷 24, 期 -, 页码 292-307

出版社

AO RESEARCH INSTITUTE DAVOS-ARI
DOI: 10.22203/eCM.v024a21

关键词

Cartilage tissue engineering; animal model; image analysis; mechanical properties; mechanical test; microstructure

资金

  1. NEDO [06001904-0]
  2. MEXT (BERC, Kogakuin University)

向作者/读者索取更多资源

The present study investigated the surface structure and mechanical properties of repair cartilage generated from a tissue engineered construct (TEC) derived from synovial mesenchymal stem cells at six months post-implantation compared to those of uninjured cartilage. TEC-mediated repair tissue was cartilaginous with Safranin O staining, and had comparable macro-scale compressive properties with uninjured cartilage. However, morphological assessments revealed that the superficial zone of TEC-mediated tissue was more fibrocartilage-like, in contrast to the middle or deep zones that were more hyaline cartilage-like with Safranin O staining. Histological scoring of the TEC-mediated tissue was significantly lower in the superficial zone than in the middle and deep zones. Scanning electron microscopy showed a thick tangential bundle of collagen fibres at the most superficial layer of uninjured cartilage, while no corresponding structure was detected at the surface of TEC-mediated tissue. Immunohistochemical analysis revealed that PRG4 was localised in the superficial area of uninjured cartilage, as well as the TEC-mediated tissue. Friction testing showed that the lubrication properties of the two tissues was similar, however, micro-indentation analysis revealed that the surface stiffness of the TEC-repair tissue was significantly lower than that of uninjured cartilage. Permeability testing indicated that the TEC-mediated tissue exhibited lower water retaining capacity than did uninjured cartilage, specifically at the superficial zone. Thus, TEC-mediated tissue exhibited compromised mechanical properties at the superficial zone, properties which need improvement in the future for maintenance of long term repair cartilage integrity.

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