Development of an equine groove model to induce metacarpophalangeal osteoarthritis: a pilot study on 6 horses.
The aim of this work was to develop an equine metacarpophalangeal joint model that induces osteoarthritis that is not primarily mediated by instability or inflammation. The study involved six Standardbred horses. Standardized cartilage surface damage or "grooves" were created arthroscopica...
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doaj-703676ba2eff4df4bae03e4d9b0a83932020-11-25T02:32:06ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01102e011508910.1371/journal.pone.0115089Development of an equine groove model to induce metacarpophalangeal osteoarthritis: a pilot study on 6 horses.Ugo ManincheddaOlivier M LepageMonika GanglSandrine HilairetBernard RemandetFrancoise MeotGeraldine PenarierEmilie SegardPierre CortezChristian JorgensenRégis SteinbergThe aim of this work was to develop an equine metacarpophalangeal joint model that induces osteoarthritis that is not primarily mediated by instability or inflammation. The study involved six Standardbred horses. Standardized cartilage surface damage or "grooves" were created arthroscopically on the distal dorsal aspect of the lateral and medial metacarpal condyles of a randomly chosen limb. The contralateral limb was sham operated. After 2 weeks of stall rest, horses were trotted 30 minutes every other day for 8 weeks, then evaluated for lameness and radiographed. Synovial fluid was analyzed for cytology and biomarkers. At 10 weeks post-surgery, horses were euthanized for macroscopic and histologic joint evaluation. Arthroscopic grooving allowed precise and identical damage to the cartilage of all animals. Under the controlled exercise regime, this osteoarthritis groove model displayed significant radiographic, macroscopic, and microscopic degenerative and reactive changes. Histology demonstrated consistent surgically induced grooves limited to non-calcified cartilage and accompanied by secondary adjacent cartilage lesions, chondrocyte necrosis, chondrocyte clusters, cartilage matrix softening, fissuring, mild subchondral bone inflammation, edema, and osteoblastic margination. Synovial fluid biochemistry and cytology demonstrated significantly elevated total protein without an increase in prostaglandin E2, neutrophils, or chondrocytes. This equine metacarpophalangeal groove model demonstrated that standardized non-calcified cartilage damage accompanied by exercise triggered altered osteochondral morphology and cartilage degeneration with minimal or inefficient repair and little inflammatory response. This model, if validated, would allow for assessment of disease processes and the effects of therapy.http://europepmc.org/articles/PMC4332493?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ugo Maninchedda Olivier M Lepage Monika Gangl Sandrine Hilairet Bernard Remandet Francoise Meot Geraldine Penarier Emilie Segard Pierre Cortez Christian Jorgensen Régis Steinberg |
spellingShingle |
Ugo Maninchedda Olivier M Lepage Monika Gangl Sandrine Hilairet Bernard Remandet Francoise Meot Geraldine Penarier Emilie Segard Pierre Cortez Christian Jorgensen Régis Steinberg Development of an equine groove model to induce metacarpophalangeal osteoarthritis: a pilot study on 6 horses. PLoS ONE |
author_facet |
Ugo Maninchedda Olivier M Lepage Monika Gangl Sandrine Hilairet Bernard Remandet Francoise Meot Geraldine Penarier Emilie Segard Pierre Cortez Christian Jorgensen Régis Steinberg |
author_sort |
Ugo Maninchedda |
title |
Development of an equine groove model to induce metacarpophalangeal osteoarthritis: a pilot study on 6 horses. |
title_short |
Development of an equine groove model to induce metacarpophalangeal osteoarthritis: a pilot study on 6 horses. |
title_full |
Development of an equine groove model to induce metacarpophalangeal osteoarthritis: a pilot study on 6 horses. |
title_fullStr |
Development of an equine groove model to induce metacarpophalangeal osteoarthritis: a pilot study on 6 horses. |
title_full_unstemmed |
Development of an equine groove model to induce metacarpophalangeal osteoarthritis: a pilot study on 6 horses. |
title_sort |
development of an equine groove model to induce metacarpophalangeal osteoarthritis: a pilot study on 6 horses. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2015-01-01 |
description |
The aim of this work was to develop an equine metacarpophalangeal joint model that induces osteoarthritis that is not primarily mediated by instability or inflammation. The study involved six Standardbred horses. Standardized cartilage surface damage or "grooves" were created arthroscopically on the distal dorsal aspect of the lateral and medial metacarpal condyles of a randomly chosen limb. The contralateral limb was sham operated. After 2 weeks of stall rest, horses were trotted 30 minutes every other day for 8 weeks, then evaluated for lameness and radiographed. Synovial fluid was analyzed for cytology and biomarkers. At 10 weeks post-surgery, horses were euthanized for macroscopic and histologic joint evaluation. Arthroscopic grooving allowed precise and identical damage to the cartilage of all animals. Under the controlled exercise regime, this osteoarthritis groove model displayed significant radiographic, macroscopic, and microscopic degenerative and reactive changes. Histology demonstrated consistent surgically induced grooves limited to non-calcified cartilage and accompanied by secondary adjacent cartilage lesions, chondrocyte necrosis, chondrocyte clusters, cartilage matrix softening, fissuring, mild subchondral bone inflammation, edema, and osteoblastic margination. Synovial fluid biochemistry and cytology demonstrated significantly elevated total protein without an increase in prostaglandin E2, neutrophils, or chondrocytes. This equine metacarpophalangeal groove model demonstrated that standardized non-calcified cartilage damage accompanied by exercise triggered altered osteochondral morphology and cartilage degeneration with minimal or inefficient repair and little inflammatory response. This model, if validated, would allow for assessment of disease processes and the effects of therapy. |
url |
http://europepmc.org/articles/PMC4332493?pdf=render |
work_keys_str_mv |
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