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首页> 外文期刊>American Journal of Veterinary Research >Development of an in vitro model of injury-induced osteoarthritis in cartilage explants from adult horses through application of single-impact compressive overload
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Development of an in vitro model of injury-induced osteoarthritis in cartilage explants from adult horses through application of single-impact compressive overload

机译:通过单冲击压缩超负荷建立成年马软骨外植体损伤诱发骨关节炎的体外模型的建立

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Objective-To develop an in vitro model of cartilage injury in full-thickness equine cartilage specimens that can be used to simulate in vivo disease and evaluate treatment efficacy. Sample-15 full-thickness cartilage explants from the trochlear ridges of the distal aspect of the femur from each of 6 adult horses that had died from reasons unrelated to the musculoskeletal system. Procedures-To simulate injury, cartilage explants were subjected to single-impact uniaxial compression to 50%, 60%, 70%, or 80% strain at a rate of 100% strain/s. Other explants were left uninjured (control specimens). All specimens underwent a culture process for 28 days and were subsequently evaluated histologically for characteristics of injury and early stages of osteoarthritis, including articular surface damage, chondrocyte cell death, focal cell loss, chondrocyte cluster formation, and loss of the extracellular matrix molecules aggrecan and types I and II collagen. Results-Compression to all degrees of strain induced some amount of pathological change typical of clinical osteoarthritis in horses; however, only compression to 60% strain induced significant changes morphologically and biochemically in the extracellular matrix. Conclusions and Clinical Relevance-The threshold strain necessary to model injury in full-thickness cartilage specimens from the trochlear ridges of the distal femur of adult horses was 60% strain at a rate of 100% strain/s. This in vitro model should facilitate study of pathophysiologic changes and therapeutic interventions for osteoarthritis. (Am J Vet Res 2013;74:40-47)
机译:目的-建立全厚度马软骨样品中软骨损伤的体外模型,可用于模拟体内疾病和评估治疗效果。来自6头成年马的每只的股骨远侧滑车脊的样本15个全层软骨外植体因与肌肉骨骼系统无关的原因死亡。程序-为了模拟伤害,将软骨外植体以100%应变/秒的速率进行单次冲击单轴压缩至50%,60%,70%或80%应变。其他外植体未受伤(对照标本)。所有标本均经过28天的培养过程,随后在组织学上评估了骨关节炎的损伤和早期阶段的特征,包括关节表面损伤,软骨细胞死亡,局部细胞丢失,软骨细胞簇形成以及细胞外基质分子聚集蛋白聚糖和I型和II型胶原。结果-各种程度的压缩都会引起马临床骨关节炎的一些典型病理改变。然而,仅压缩至60%应变会在细胞外基质中在形态和生化上引起显着变化。结论和临床意义-成年马股骨远端滑车脊全厚度软骨标本中的损伤建模所需的阈值应变为60%应变,速率为100%应变/秒。该体外模型应有助于研究骨关节炎的病理生理变化和治疗干预措施。 (Am J Vet Res 2013; 74:40-47)

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