首页> 外文会议>ASME summer bioengineering conference;SBC2012 >MECHANICAL LOADING REDUCES CHONDROCYTE DEATH AFTER SINGLE IMPACT TRAUMA: PORCINE KNEE MODEL
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MECHANICAL LOADING REDUCES CHONDROCYTE DEATH AFTER SINGLE IMPACT TRAUMA: PORCINE KNEE MODEL

机译:单次创伤后机械负荷减少软骨细胞死亡:猪膝关节模型

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Osteoarthritis often results from degenerative changes induced by trauma such as joint impact injuries sustained during athletics, combat, or motor vehicle accidents. Articular cartilage, avascular in nature, relies of synovial nutrition [1] and lacks sufficient regenerative capabilities [2]. Acute cartilage injuries have been shown to induce cell death [3, 4, 5], leading to reduced chondrocyte density and degenerative changes to the cartilage matrix composition; over time the tissue becomes compromised and loses its ability to maintain and restore itself. It has been demonstrated, that mechanical loading can affect local perfusion and diffusion through the matrix thereby altering the flow of nutrients and metabolites [2, 6]. Furthermore, mechanical loading modulates the chondrocyte biosynthesis of extracellular matrix in that is required in the cartilage repair process.
机译:骨关节炎通常是由外伤引起的退行性变化引起的,例如在田径,战斗或机动车辆事故期间遭受的关节撞击伤。关节软骨本质上是无血管的,依靠滑液营养[1],并且缺乏足够的再生能力[2]。急性软骨损伤已显示可诱导细胞死亡[3、4、5],导致软骨细胞密度降低和软骨基质组成的退行性改变。随着时间的流逝,组织会受到损害,并失去其自我维持和恢复的能力。已经证明,机械负荷会影响通过基质的局部灌注和扩散,从而改变营养物质和代谢物的流动[2,6]。此外,机械载荷调节软骨修复过程中所需的软骨细胞生物合成的细胞外基质。

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