4.6 Article

Characterisation of osteoarthritis in a small animal model of type 2 diabetes mellitus

Journal

BONE & JOINT RESEARCH
Volume 3, Issue 6, Pages 203-211

Publisher

BRITISH EDITORIAL SOC BONE JOINT SURGERY
DOI: 10.1302/2046-3758.36.2000244

Keywords

Osteoarthritis; Type 2 diabetes mellitus; Knee; Articular Cartilage; Histology; Immunohistochemistry

Funding

  1. Northern California Institute for Research and Education
  2. UCSF Department of Orthopaedic Surgery
  3. Orthopaedic Research and Education Foundation

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Objectives Our objective in this article is to test the hypothesis that type 2 diabetes mellitus (T2DM) is a factor in the onset and progression of osteoarthritis, and to characterise the quality of the articular cartilage in an appropriate rat model. Methods T2DM rats were obtained from the UC Davis group and compared with control Lewis rats. The diabetic rats were sacrificed at ages from six to 12 months, while control rats were sacrificed at six months only. Osteoarthritis severity was determined via histology in four knee quadrants using the OARSI scoring guide. Immunohistochemical staining was also performed as a secondary form of osteoarthritic analysis. Results T2DM rats had higher mean osteoarthritis scores than the control rats in each of the four areas that were analysed. However, only the results at the medial and lateral femur and medial tibia were significant. Cysts were also found in T2DM rats at the junction of the articular cartilage and subchondral bone. Immunohistochemical analysis does not show an increase in collagen II between control and T2DM rats. Mass comparisons also showed a significant relationship between mass and osteoarthritis score. Conclusions T2DM was found to cause global degeneration in the UCD rat knee joints, suggesting that diabetes itself is a factor in the onset and progression of osteoarthritis. The immunohistochemistry stains showed little to no change in collagen II degeneration between T2DM and control rats. Overall, it seems that the animal model used is pertinent to future studies of T2DM in the development and progression of osteoarthritis.

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