Articular cartilage increases transition zone regeneration in bone-tendon junction healing.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 18987921.
- Also identified by DOI 10.1007/s11999-008-0606-8 and PMC identifier 2650067.
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Abstract
The fibrocartilage transition zone in the direct bone-tendon junction reduces stress concentration and protects the junction from failure. Unfortunately, bone-tendon junctions often heal without fibrocartilage transition zone regeneration. We hypothesized articular cartilage grafts could increase fibrocartilage transition zone regeneration. Using a goat partial patellectomy repair model, autologous articular cartilage was harvested from the excised distal third patella and interposed between the residual proximal two-thirds bone fragment and tendon during repair in 36 knees. We evaluated fibrocartilage transition zone regeneration, bone formation, and mechanical strength after repair at 6, 12, and 24 weeks and compared them with direct repair. Autologous articular cartilage interposition resulted in more fibrocartilage transition zone regeneration (69.10% +/- 14.11% [mean +/- standard deviation] versus 8.67% +/- 7.01% at 24 weeks) than direct repair at all times. There was no difference in the amount of bone formation and mechanical strength achieved. Autologous articular cartilage interposition increases fibrocartilage transition zone regeneration in bone-tendon junction healing, but additional research is required to ascertain the mechanism of stimulation and to establish the clinical applicability.
Medical subject headings
- Cartilage, Articular
- Fibrocartilage
- Patellar Ligament
- Stifle
- Wound Healing
Anatomy
- knee