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The Influence of Oblique Angle Forced Exercise in Surgically Destabilized Stifle Joints Is Synergistic with Bone, but Antagonistic with Cartilage in an Ovine Model of Osteoarthritis

Large animal models of osteoarthritis are a necessary testing ground for FDA approval of human medicine applications. Sheep models have advantages over other available large animals, but development and progression of osteoarthritis in sheep is exceedingly slow, which handicaps progress in developme...

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Autores principales: Hill, Rachel J., Mason, Holly M., Yeip, Gavin, Merchant, Samer S., Olsen, Aaron L., Stott, Rusty D., Van Wettere, Arnaud J., Bressel, Eadric, Mason, Jeffrey B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5350401/
https://www.ncbi.nlm.nih.gov/pubmed/28348888
http://dx.doi.org/10.1155/2017/7481619
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author Hill, Rachel J.
Mason, Holly M.
Yeip, Gavin
Merchant, Samer S.
Olsen, Aaron L.
Stott, Rusty D.
Van Wettere, Arnaud J.
Bressel, Eadric
Mason, Jeffrey B.
author_facet Hill, Rachel J.
Mason, Holly M.
Yeip, Gavin
Merchant, Samer S.
Olsen, Aaron L.
Stott, Rusty D.
Van Wettere, Arnaud J.
Bressel, Eadric
Mason, Jeffrey B.
author_sort Hill, Rachel J.
collection PubMed
description Large animal models of osteoarthritis are a necessary testing ground for FDA approval of human medicine applications. Sheep models have advantages over other available large animals, but development and progression of osteoarthritis in sheep is exceedingly slow, which handicaps progress in development of potential treatments. We combined oblique angle forced exercise to increase stress on the stifle, with surgical destabilization to hasten the development of osteoarthritis in ewes. Methods for early detection of clinical signs included radiography, urine, and serum biomarker assays and gait analysis and ex vivo we used microcomputed tomography and macroscopic joint analysis. Our model was able to produce clinically detectable signs of osteoarthritis in a relatively short period (14 weeks). Changes in bone were highly correlated between microcomputed tomography and radiographic analysis and changes in cartilage correlated well between urinary glycosaminoglycan levels and serum aggrecanase analyses. Exercise improved the negative effects of destabilization in bone but exacerbated the negative effects of destabilization in cartilage. These observations suggest that we may need to consider treatments for bone and cartilage separately. These results represent an improved large animal model of osteoarthritis with rapid onset of disease and superior detection of bone and soft tissue changes.
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spelling pubmed-53504012017-03-27 The Influence of Oblique Angle Forced Exercise in Surgically Destabilized Stifle Joints Is Synergistic with Bone, but Antagonistic with Cartilage in an Ovine Model of Osteoarthritis Hill, Rachel J. Mason, Holly M. Yeip, Gavin Merchant, Samer S. Olsen, Aaron L. Stott, Rusty D. Van Wettere, Arnaud J. Bressel, Eadric Mason, Jeffrey B. Arthritis Research Article Large animal models of osteoarthritis are a necessary testing ground for FDA approval of human medicine applications. Sheep models have advantages over other available large animals, but development and progression of osteoarthritis in sheep is exceedingly slow, which handicaps progress in development of potential treatments. We combined oblique angle forced exercise to increase stress on the stifle, with surgical destabilization to hasten the development of osteoarthritis in ewes. Methods for early detection of clinical signs included radiography, urine, and serum biomarker assays and gait analysis and ex vivo we used microcomputed tomography and macroscopic joint analysis. Our model was able to produce clinically detectable signs of osteoarthritis in a relatively short period (14 weeks). Changes in bone were highly correlated between microcomputed tomography and radiographic analysis and changes in cartilage correlated well between urinary glycosaminoglycan levels and serum aggrecanase analyses. Exercise improved the negative effects of destabilization in bone but exacerbated the negative effects of destabilization in cartilage. These observations suggest that we may need to consider treatments for bone and cartilage separately. These results represent an improved large animal model of osteoarthritis with rapid onset of disease and superior detection of bone and soft tissue changes. Hindawi Publishing Corporation 2017 2017-02-27 /pmc/articles/PMC5350401/ /pubmed/28348888 http://dx.doi.org/10.1155/2017/7481619 Text en Copyright © 2017 Rachel J. Hill et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Hill, Rachel J.
Mason, Holly M.
Yeip, Gavin
Merchant, Samer S.
Olsen, Aaron L.
Stott, Rusty D.
Van Wettere, Arnaud J.
Bressel, Eadric
Mason, Jeffrey B.
The Influence of Oblique Angle Forced Exercise in Surgically Destabilized Stifle Joints Is Synergistic with Bone, but Antagonistic with Cartilage in an Ovine Model of Osteoarthritis
title The Influence of Oblique Angle Forced Exercise in Surgically Destabilized Stifle Joints Is Synergistic with Bone, but Antagonistic with Cartilage in an Ovine Model of Osteoarthritis
title_full The Influence of Oblique Angle Forced Exercise in Surgically Destabilized Stifle Joints Is Synergistic with Bone, but Antagonistic with Cartilage in an Ovine Model of Osteoarthritis
title_fullStr The Influence of Oblique Angle Forced Exercise in Surgically Destabilized Stifle Joints Is Synergistic with Bone, but Antagonistic with Cartilage in an Ovine Model of Osteoarthritis
title_full_unstemmed The Influence of Oblique Angle Forced Exercise in Surgically Destabilized Stifle Joints Is Synergistic with Bone, but Antagonistic with Cartilage in an Ovine Model of Osteoarthritis
title_short The Influence of Oblique Angle Forced Exercise in Surgically Destabilized Stifle Joints Is Synergistic with Bone, but Antagonistic with Cartilage in an Ovine Model of Osteoarthritis
title_sort influence of oblique angle forced exercise in surgically destabilized stifle joints is synergistic with bone, but antagonistic with cartilage in an ovine model of osteoarthritis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5350401/
https://www.ncbi.nlm.nih.gov/pubmed/28348888
http://dx.doi.org/10.1155/2017/7481619
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