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Changes in synovial fluid and serum biomarkers with exercise and early osteoarthritis in horses.

机译:马与运动和早期骨关节炎的滑液和血清生物标志物的变化。

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OBJECTIVE: To discriminate between changes in biomarkers with exercise compared to changes in biomarkers with osteoarthritis (OA) in exercising horses. METHOD: Sixteen, 2-year-old horses were randomly assigned either to an exercise-alone (n=8) or OA-affected (also exercised) (n=8) group. All horses had both mid-carpal joints arthroscoped and OA induced in one mid-carpal joint in the OA-affected joints of OA-affected horses. Two weeks after surgery all horses commenced a strenuous exercise program on a high-speed treadmill. Clinical outcomes and synovial fluid and serum biomarkers, were evaluated weekly. Synovial and serum biomarkers evaluated were epitope CS846 (CS846), epitope CPII (CPII), glycosaminoglycans (GAGs), epitope Col CEQ (Col CEQ) (a marker of type II collagen degradation), type I and II collagen degradation fragments (C1,2C), osteocalcin, C-terminal of bone type I collagen (CTX1), type I collagen (Col I) and (synovial fluid only of cartilage) prostaglandin E2 (PGE2) levels. Horses were euthanized at day 91 and their joints assessed grossly, histopathologically, and histochemically. RESULTS: Exercise induced a significant increase in synovial fluid CS846, CPII, GAG, Col CEQ, C1,2C, osteocalcin and Col I concentrations. There was a significant increase in synovial fluid CS846, CPII, Col CEQ, C1,2C, osteocalcin, Col I and PGE2 concentrations in OA-affected joints compared to exercise-alone joints. The concentration of serum CS846, CPII, GAG, osteocalcin, C1,2C and Col I increased with exercise. For each of these biomarkers there was also a statistically significant increase in serum biomarker levels in OA-affected horses compared to exercise-alone horses. CONCLUSIONS: Six synovial fluid and serum biomarkers were useful in separating early experimental OA from exercise alone but synovial fluid CTX1 and serum Col CEQ and CTX1 were not.
机译:目的:区分运动马匹中生物标志物的变化与运动性骨关节炎(OA)中生物标志物的变化。方法:将16匹2岁大马随机分配为单独运动(n = 8)或受OA影响(也运动)(n = 8)的组。所有马的关节都被腕关节固定,并且在受OA影响的马的受OA影响的关节中,在一个中腕关节中诱发了OA。手术两周后,所有马匹都开始在高速跑步机上进行剧烈运动。每周评估临床结局以及滑液和血清生物标志物。评估的滑膜和血清生物标记为抗原决定簇CS846(CS846),抗原决定簇CPII(CPII),糖胺聚糖(GAGs),抗原决定簇Col CEQ(Col CEQ)(II型胶原降解的标记),I型和II型胶原降解片段(C1, 2C),骨钙素,骨I型胶原(CTX1),I型胶原(Col I)和(仅软骨的软骨液)前列腺素E2(PGE2)水平。在第91天对马实施安乐死,对其关节进行了全面,组织病理学和组织化学评估。结果:运动引起滑液CS846,CPII,GAG,Col CEQ,C1,2C,骨钙素和Col I浓度显着增加。与单纯运动关节相比,OA影响关节的滑液CS846,CPII,Col CEQ,C1,2C,骨钙素,Col I和PGE2浓度显着增加。血清CS846,CPII,GAG,骨钙素,C1,2C和Col I的浓度随运动而增加。对于这些生物标志物中的每一种,与单独锻炼的马相比,在受OA影响的马中血清生物标志的水平也有统计学上的显着增加。结论:6种滑膜液和血清生物标志物可用于单独从运动中分离早期实验性OA,而滑膜液CTX1和血清Col CEQ和CTX1则无作用。

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