Literature DB >> 21623571

Cartilage damage involving extrusion of mineralisable matrix from the articular calcified cartilage and subchondral bone.

A Boyde1, C M Riggs, A J Bushby, B McDermott, G L Pinchbeck, P D Clegg.   

Abstract

Arthropathy of the distal articular surfaces of the third metacarpal (Mc3) and metatarsal (Mt3) bones in the Thoroughbred racehorse (Tb) is a natural model of repetitive overload arthrosis. We describe a novel pathology that affects the articular calcified cartilage (ACC) and subchondral bone (SCB) and which is associated with hyaline articular cartilage degeneration. Parasagittal slices cut from the palmar quadrant of the distal condyles of the left Mc3/Mt3 of 39 trained Tbs euthanized for welfare reasons were imaged by point projection microradiography, and backscattered electron (BSE) scanning electron microscopy (SEM), light microscopy, and confocal scanning light microscopy. Mechanical properties were studied by nanoindentation. Data on the horses' training and racing career were also collected. Highly mineralised projections were observed extending from cracks in the ACC mineralising front into the hyaline articular cartilage (HAC) up to two-thirds the thickness of the HAC, and were associated with focal HAC surface fibrillation directly overlying their site. Nanoindentation identified this extruded matrix to be stiffer than any other mineralised phase in the specimen by a factor of two. The presence of projections was associated with a higher cartilage Mankin histology score (P<0.02) and increased amounts of gross cartilage loss pathologically on the condyle (P<0.02). Presence of projections was not significantly associated with: total number of racing seasons, age of horse, amount of earnings, number of days in training, total distance galloped in career, or presence of wear lines.

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Year:  2011        PMID: 21623571     DOI: 10.22203/ecm.v021a35

Source DB:  PubMed          Journal:  Eur Cell Mater        ISSN: 1473-2262            Impact factor:   3.942


  13 in total

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Review 4.  Conventional and ultrashort time-to-echo magnetic resonance imaging of articular cartilage, meniscus, and intervertebral disk.

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5.  Subchondral bone morphology in the metacarpus of racehorses in training changes with distance from the articular surface but not with age.

Authors:  Sandra Martig; Peta L Hitchens; Mark A Stevenson; R Chris Whitton
Journal:  J Anat       Date:  2018-02-15       Impact factor: 2.610

6.  On fragmenting, densely mineralised acellular protrusions into articular cartilage and their possible role in osteoarthritis.

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7.  High density infill in cracks and protrusions from the articular calcified cartilage in osteoarthritis in standardbred horse carpal bones.

Authors:  Sheila Laverty; Mathieu Lacourt; Chan Gao; Janet E Henderson; Alan Boyde
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8.  High-Density Mineralized Protrusions and Central Osteophytes: Associated Osteochondral Junction Abnormalities in Osteoarthritis.

Authors:  Alecio F Lombardi; Qingbo Tang; Jonathan H Wong; Judith L Williams; Saeed Jerban; Yajun Ma; Hyungseok Jang; Jiang Du; Eric Y Chang
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9.  Histomorphometric case-control study of subarticular osteophytes in patients with osteoarthritis of the hip.

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Journal:  BMC Musculoskelet Disord       Date:  2020-10-06       Impact factor: 2.362

Review 10.  Macro, Micro, and Molecular. Changes of the Osteochondral Interface in Osteoarthritis Development.

Authors:  Xiwei Fan; Xiaoxin Wu; Ross Crawford; Yin Xiao; Indira Prasadam
Journal:  Front Cell Dev Biol       Date:  2021-05-10
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