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Osteoarthritis Cartilage ; 16(11): 1327-35, 2008 Nov.
Article in English | MEDLINE | ID: mdl-18442932

ABSTRACT

OBJECTIVE: The most used model for joint instability is the canine anterior cruciate ligament transection (ACLT)-model. The ACLT-model can be extended with a medial meniscectomy (MX) (i.e., ACLT-MX-model) to avoid unintentional, and with that variable, meniscal damage. The present study compares the ACLT-MX-model with the more recently introduced Groove-model on longitudinal measurements of osteophyte formation and gait as a surrogate marker of pain and disability, in addition to structural endpoint parameters. METHODS: Degenerative joint damage was induced Labrador dogs according to the ACLT-MX-model (n=7) or Groove-model (n=7). Every 4 weeks radiographs were taken to analyze osteophyte formation. Every 2 weeks gait was recorded using force-plate analysis. Joints were analyzed for features of degeneration 12 weeks after surgery. RESULTS: Both models showed similar osteophyte formation and gait changes for both experimental and contra-lateral control joints, although more pronounced for the ACLT-MX-model. This was supported by the structural endpoint measurements. Cartilage integrity, chondrocyte activity and synovial inflammation revealed similar characteristics of degenerative joint disease in both groups, again more pronounced in the ACLT-MX-model. CONCLUSIONS: The ACLT-MX-model demonstrates characteristics of joint degeneration that are related to moderate to severe osteoarthritis with clear synovial inflammatory activity. The Groove-model is a less painful and a significantly milder model of joint degeneration. The latter model might be more suitable to study subtle changes as a result of intervention than the more robust ACLT-MX-model.


Subject(s)
Anterior Cruciate Ligament Injuries , Cartilage, Articular/physiology , Joint Instability/physiopathology , Osteoarthritis/physiopathology , Regeneration/physiology , Stifle/physiology , Animals , Anterior Cruciate Ligament/pathology , Arthralgia/etiology , Arthralgia/physiopathology , Cartilage, Articular/injuries , Cartilage, Articular/pathology , Chondrocytes/pathology , Dogs , Gait/physiology , Inflammation , Joint Instability/pathology , Models, Animal , Osteophyte/pathology
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