首页> 外文期刊>Journal of orthopaedic research >Matrix and cell injury due to sub-impact loading of adult bovine articular cartilage explants: effects of strain rate and peak stress.
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Matrix and cell injury due to sub-impact loading of adult bovine articular cartilage explants: effects of strain rate and peak stress.

机译:成年牛关节软骨外植体亚冲击负荷引起的基质和细胞损伤:应变率和峰值应力的影响。

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摘要

Mechanical overloading of cartilage has been implicated in the initiation and progression of osteoarthrosis. Our objectives were to identify threshold levels of strain rate and peak stress at which sub-impact loads could induce cartilage matrix damage and chondrocyte injury in bovine osteochondral explants and to explore relationships between matrix damage, spatial patterns of cell injury, and applied loads. Single sub-impact loads characterized by a constant strain rate between 3 x 10(-5) and 0.7 s(-1) to a peak stress between 3.5 and 14 MPa were applied, after which explants were maintained in culture for four days. At the higher strain rates, matrix mechanical failure (tissue cracks) and cell deactivation were most severe near the cartilage superficial zone and were associated with sustained increased release of proteoglycan from explants. In contrast, low strain rate loading was associated with cell deactivation in the absence of visible matrix damage. Furthermore, cell activity and proteoglycan synthesis were suppressed throughout the cartilage depth, but in a radially dependent manner with the most severe effects at the center of cylindrical explants. Results highlight spatial patterns of matrix damage and cell injury which depend upon the nature of injurious loading applied. These patterns of injury may also differ in terms of their long-term implications for progression of degradative disease and possibilities for cartilage repair.
机译:软骨的机械超负荷与骨关节炎的发生和发展有关。我们的目标是确定应变速率和峰值应力的阈值水平,在该阈值水平下,次冲击载荷可能导致牛骨软骨外植体软骨基质损伤和软骨细胞损伤,并探讨基质损伤,细胞损伤的空间模式和施加的载荷之间的关系。施加以3 x 10(-5)和0.7 s(-1)之间的恒定应变速率到3.5和14 MPa之间的峰值应力为特征的单次冲击载荷,此后将外植体培养4天。在较高的应变率下,在软骨表层附近,基质机械失效(组织破裂)和细胞失活最严重,并且与外植体中蛋白聚糖的持续释放有关。相反,在不存在可见的基质损伤的情况下,低应变速率负荷与细胞失活有关。此外,细胞活性和蛋白聚糖的合成在整个软骨深度都受到抑制,但以径向依赖的方式在圆柱状外植体的中心受到最严重的影响。结果突出了基质损伤和细胞损伤的空间模式,这取决于所施加的有害负荷的性质。这些损伤方式在其对退化性疾病进展的长期影响以及软骨修复的可能性方面也可能有所不同。

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