...
首页> 外文期刊>Osteoarthritis and cartilage >Cartilage viability after repetitive loading: a preliminary report.
【24h】

Cartilage viability after repetitive loading: a preliminary report.

机译:反复加载后软骨的生存能力:初步报告。

获取原文
获取原文并翻译 | 示例
           

摘要

OBJECTIVE: To assess matrix changes and chondrocyte viability during static and continuous repetitive mechanical loading in mature bovine articular cartilage explants. METHODS: Cartilage explants were continuously loaded either statically or cyclically (0.5 Hz) for 1-72 h (max. stress 1 megapascal). Cell death was assessed using fluorescent probes and detection of DNA strand breakage characteristic of apoptosis. Cell morphology and matrix integrity were evaluated using histology and transmission electron microscopy. RESULTS: Repetitive loading of articular cartilage at physiological levels of stress (1 megapascal) was found to be harmful to only the chondrocytes in the superficial tangential zone (STZ) and depended on the characteristics (static vs cyclic) and duration (1-72 h) of the applied load. The chondrocytes in the middle and deep zone remained viable at all times. Static loads caused cell death at an early time (3 h) as compared with cyclic loads (sinusoidal, 0.5 cycles per s for 6 h). The amount and extent of cell death peaked at 6 h of cyclic loading, and did not change in subsequent experiments run for longer periods of time (up to 72 h). There was no indication of fragmented nuclear DNA but there was evidence of injurious cell death (necrosis) by electron microscopy. Morphological analysis of cartilage repetitively loaded for 24 h showed matrix damage only in the uppermost superficial layer at the articular surface, reminiscent of the early stages of osteoarthritis. CONCLUSIONS: Cell death in mature cartilage explants occurred after 6 hours of continuous repetitive load or 3 h of static load. Cell death was directly related to the mechanical load, as control (free-swelling) explants remained viable at all times. The excessive, repetitive loading conditions imposed are not physiological, and demonstrate the deleterious effects of mechanical overload resulting in morphological and cellular damage similar to that seen in degenerative joint disease. Copyright 2002 OsteoArthritis Research Society International.
机译:目的:评估成熟的牛关节软骨外植体在静态和连续重复机械负荷过程中的基质变化和软骨细胞活力。方法:将软骨外植体以静态或循环方式(0.5 Hz)连续加载1-72 h(最大应力为1兆帕)。使用荧光探针评估细胞死亡,并检测凋亡的DNA链断裂特征。使用组织学和透射电子显微镜评估细胞形态和基质完整性。结果:在生理压力水平(1兆帕斯卡)下反复施加关节软骨仅对浅表切向区(STZ)的软骨细胞有害,并且取决于特征(静态与循环)和持续时间(1-72 h) )。中部和深部区域的软骨细胞始终保持活力。与周期性负荷(正弦波,每6秒0.5个周期)相比,静态负荷在早期(3小时)导致细胞死亡。细胞死亡的数量和程度在循环加载的6小时达到峰值,并且在随后的较长时间(长达72小时)实验中没有变化。没有迹象表明核DNA片段化,但是通过电子显微镜观察到有伤害性细胞死亡(坏死)的迹象。反复加载软骨24 h的形态学分析表明,仅在关节表面最上层的表层中存在基质损伤,让人联想到骨关节炎的早期阶段。结论:连续重复负荷6小时或静态负荷3 h后,成熟软骨外植体发生细胞死亡。细胞死亡与机械负荷直接相关,因为对照(自由溶胀)外植体始终保持活力。施加的过度的,重复的负荷条件不是生理性的,并且表明机械过载的有害作用,导致类似于退行性关节疾病的形态学和细胞损伤。版权所有2002 OsteoArthritis Research Society International。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号