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Chondrocyte Intracellular Matrix Strain Fields of Articular Cartilage Surface in Hyperglycemia Model of Rat: Cellular Morphological Study

Research output: Contribution to journalArticlepeer-review

Abstract

Introduction: Chondrocyte is one cell in articular cartilage was products many proteins, molecules, and other factors. The external influence of cartilage, such as: hyperglycemia was entering joint capsule and impact to the chondrocytes and the cartilage. Hyperglycemia caused modification of heparan sulfate proteoglycan 2 (perlecan) proteins through glycation process. Aim: The aim of this study was to analyze morphological changing of chondrocytes pericellular matrix by the influence of hyperglycemia. Material and Methods: Eighteen adult male rats were divided into six groups: control, rat treated with sugar intake was 0.5 mg/kg, 0.75 mg/ kg, 1mg/kg, 1.5 g/kg and 2 mg/kg of body weight. The animal model was dislocated and left knee was taken to observe changing of chondrocytes pericellular matrix strain fields by Scanning Electron Microscope (SEM) from perpendicular to femoral condylus cartilage. Results: Changing of chondrocytes intracellular matrix strain fields as changing of cell diameters and cell distances at group control and group I to group V, which cell diameters was lower level and cell distances was the highest level at over diet 2. This changing of intracellular matrix strain fields was corresponding to changing chondrocytes morphology in hyperglycemia condition, due to hypertrophic stage as adaptive responses. This research as based on next research for accomplish of hyperglycemia influence to morphology articular cartilage changing to prevent degeneration of cartilage towards osteoarthritis. Conclusions: Present study concludes that hyperglycemia influence to chondrocyte intracellular matrix strain fields changing.

Original languageEnglish
Pages (from-to)348-351
Number of pages4
JournalMedical Archives
Volume72
Issue number5
DOIs
Publication statusPublished - 1 Nov 2018

Keywords

  • cartilages
  • chondrocytes
  • heparan sulfate proteoglycan 2 (perlecan) proteins
  • hyperglycemia

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