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Topic:Extracellular matrix

The extracellular matrix (ECM) in horses is a complex network of proteins and polysaccharides that provides structural and biochemical support to surrounding cells. It is a dynamic entity involved in various physiological processes, including tissue repair, development, and homeostasis. In equine biology, the ECM is composed of components such as collagen, elastin, proteoglycans, and glycoproteins, which contribute to the integrity and functionality of tissues like cartilage, tendons, and skin. Alterations in the ECM can influence cellular behavior and are associated with conditions such as osteoarthritis and tendon injuries. This page aggregates peer-reviewed research studies and scholarly articles that explore the composition, function, and implications of the extracellular matrix in equine health and disease.
Pathogenesis of degenerative joint disease.
Equine veterinary journal    January 1, 1987   Volume 19, Issue 1 15-18 doi: 10.1111/j.2042-3306.1987.tb02569.x
Clyne MJ.Proteoglycan degradation is central to the development of degenerative joint disease. Proteoglycans may be degraded by lysosomal enzymes from chondrocytes, synoviocytes or leucocytes. Collagen and matrix degradation occurs either by direct damage or due to degrading enzymes released into synovial fluid. Once the pathological sequence has begun it continues in a cyclic manner unless arrested by the ability of chondrocytes to synthesise sufficient matrix components. Treatment should ideally be directed to this end.
The distribution of types I and III collagen and fibronectin in the healing equine tendon.
Connective tissue research    January 1, 1984   Volume 12, Issue 3-4 211-227 doi: 10.3109/03008208409013684
Williams IF, McCullagh KG, Silver IA.During tissue response to injury the glycoproteins fibronectin and Type III collagen are synthesized in increased amounts. We have studied the distribution of these molecules in the healing tendon at various times after injury by comparison with that of the major constituent of normal tendon, Type I collagen. Immunofluorescent localization demonstrated the presence of fibronectin throughout the tendon within one week after injury. Staining was found in the matrix, both around capillaries and around fibroblast-like cells. Fibronectin was still apparent in the healing tendon at one month after i...
Basic physiology of wound healing in the horse.
Equine veterinary journal    January 1, 1982   Volume 14, Issue 1 7-15 doi: 10.1111/j.2042-3306.1982.tb02326.x
Silver IA.Wound healing is part of the normal general repair process of the body. Its efficient completion depends on many factors, some physical, eg, pH, oxygen tension and tissue tension, and some biological, eg, cell-cell interaction and feedback of extracellular matrix on to the cells which produce it. The factors which affect healing are discussed and failures and anomalies in the process described. New techniques which may improve the quality of healing in specialised tissues are explained. Recent research on wound healing has concentrated on the role of the different cell types in the process and...
Microstructure of the Peritubular Matrix in Horse Dentin.
The Bulletin of Tokyo Dental College    March 1, 1965   Volume 35 1-14 
EDA S, TAKUMA S.No abstract available
Differences in extracellular matrix proteins between Friesian horses with aortic rupture, unaffected Friesians and Warmblood horses.
   March 19, 2026  
Unlike in Warmblood horses, aortic rupture is quite common in Friesian horses, in which a hereditary trait is suspected. The aortic connective tissue in affected Friesians shows histological changes such as medial necrosis, elastic fibre fragmentation, mucoid material accumulation and fibrosis with aberrant collagen morphology. However, ultrastructural examination of the collagen fibres of the mid-thoracic aorta has been inconclusive in further elucidating the pathogenesis of the disease. Objective: To assess several extracellular matrix (ECM) components biochemically in order to explore a pos...
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