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Search: WFRF:(Espanha Maria)

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1.
  • Espanha, Maria, et al. (author)
  • Extracellular matrix composition of full-thickness defect repair tissue is little influenced by exercise in rat articular cartilage.
  • 2001
  • In: Connective Tissue Research. - 0300-8207 .- 1607-8438. ; 42:2, s. 97-109
  • Journal article (peer-reviewed)abstract
    • Full-thickness articular cartilage defects in the femoral condyles of adult rats were examined four and eight weeks after injury. Quantitative polarized light microscopic analysis showed that birefringence of the tissue in the central repair area increased more in rats exercised on a treadmill. Glycosaminoglycan content in the repair tissue was also higher than in the intermittent active motion group at four weeks after injury, but by eight weeks the levels were similar in both groups. No normal-looking articular cartilage was formed in the lesions, and only in one animal type II collagen was observed in the superficial zone of repair tissue. No 3B3(-) antigenicity of the proteoglycans was seen during repair. In conclusion, exercise minimally modified the repair of full-thickness articular cartilage defects in adult rats. The repair in the exercised group may occur slightly faster in the early stages but no difference was seen at the eight week time interval between the exercised and the intermittently active group.
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2.
  • Lammi, Pirkko, et al. (author)
  • Strong hyaluronan expression in the full-thickness rat articular cartilage repair tissue.
  • 2001
  • In: Histochemistry and Cell Biology. - : Springer. - 0948-6143 .- 1432-119X. ; 115:4, s. 301-308
  • Journal article (peer-reviewed)abstract
    • Articular cartilage lesions have a poor capacity to regenerate. In full-depth articular cartilage defects, the repair process involves an ingrowth of mesenchymal cells from the bone marrow to the injured area, and these cells attempt to restore the lesion with cartilage-like repair tissue. In this study, we investigated histologically the distribution of hyaluronan in the rat repair tissue in relation to other glycosaminoglycans. Full-depth lesions were drilled to the weight-bearing region of rat medical femoral condyle. The rats were divided into two groups: intermittent active motion (IAM) and running training (RT) groups. In the RT group, programmed exercise was started 1 week after surgery, while the rats in the IAM group could move freely in their cages. The lesions were investigated 4 and 8 weeks after the surgery. Semiquantitative histological grading showed no significant differences in the repair between the groups. In normal articular cartilage, hyaluronan was stained mainly around chondrocytes. During repair, strong hyaluronan staining was observed in loose mesenchymal tissue, while in the repair area undergoing endochondral ossification, hyaluronan was intensively stained mainly around the hypertrophic chondrocytes. Remarkably strong staining for hyaluronan was noticed in areas of apparent mesenchymal progenitor cell invasion, the areas being simultaneously devoid of staining for keratan sulphate. In conclusion, hyaluronan is strongly expressed in the early cartilage repair tissue, and its staining intensity and distribution shows very sensitively abnormal articular cartilage structure.
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  • Result 1-2 of 2
Type of publication
journal article (2)
Type of content
peer-reviewed (2)
Author/Editor
Lammi, Mikko, 1961- (2)
Helminen, Heikki (2)
Lammi, Pirkko (2)
Espanha, Maria (2)
Hyttinen, Mika (1)
Tammi, Raija (1)
University
Umeå University (2)
Language
English (2)
Research subject (UKÄ/SCB)
Medical and Health Sciences (2)
Natural sciences (1)
Year

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