Enhanced Extracellular Matrix Breakdown Characterizes the Early Distraction Phase of Canine Knee Joint Distraction

Publication date

2021-12-01

Authors

Teunissen, MichelleISNI 0000000492613719
Miranda Bedate, AlbertoISNI 0000000506026735
Coeleveld, Katja
Riemers, Frank MORCID 0000-0003-4732-9447ISNI 0000000419473190
Meij, Björn P.ORCID 0000-0002-0165-1169ISNI 0000000388662836
Lafeber, Floris P J G
Tryfonidou, Marianna AORCID 0000-0002-2333-7162ISNI 0000000388930095
Mastbergen, Simon C

Editors

Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

OBJECTIVE: Joint distraction triggers intrinsic cartilage repair in animal models of osteoarthritis (OA), corroborating observations in human OA patients treated with joint distraction. The present study explores the still largely elusive mechanism initiating this repair process. DESIGN: Unilateral OA was induced in the knee joint of 8 dogs using the groove model; the contralateral joint served as a control. After 10 weeks, 4 animals received joint distraction, the other 4 serving as OA controls. Halfway the distraction period (after 4 weeks of a standard 8-week distraction treatment), all animals were euthanized, and joint tissues were collected. A targeted quantitative reverse transcription polymerase chain reaction (qRT-PCR) analysis was performed of commonly involved processes including matrix catabolism/anabolism, inflammation, and known signaling pathways in OA. In addition, cartilage changes were determined on tissue sections using the canine OARSI (Osteoarthritis Research Society International) histopathology score and collagen type II (COL2A1) immunostaining. RESULTS: Midway distraction, the distracted OA joint showed an upregulation of proteolytic genes, for example, ADAMTS5, MMP9, MMP13, compared to OA alone and the healthy joints, which correlated with an increased OARSI score. Additionally, genes of the transforming growth factor (TGF)-β and Notch pathway, and markers associated with progenitor cells were increased. CONCLUSIONS: Joint distraction initiates both catabolic and anabolic transcriptional responses. The enhanced turnover, and thereby renewal of the matrix, could be the key to the cartilage repair observed in the months after joint distraction.

Keywords

cartilage regeneration, groove model, osteoarthritis, Immunology and Allergy, Biomedical Engineering, Physical Therapy, Sports Therapy and Rehabilitation, SDG 3 - Good Health and Well-being

Citation

Teunissen, M, Miranda Bedate, A, Coeleveld, K, Riemers, F M, Meij, B P, Lafeber, F P J G, Tryfonidou, M A & Mastbergen, S C 2021, 'Enhanced Extracellular Matrix Breakdown Characterizes the Early Distraction Phase of Canine Knee Joint Distraction', Cartilage, vol. 13, no. 2_suppl, pp. 1654S-1664S. https://doi.org/10.1177/19476035211014595