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Factors influencing the oxygen concentration gradient from the synovial surface of articular cartilage to the cartilage-bone interface: a modeling study.

机译:影响从关节软骨滑膜表面到软骨-骨界面的氧浓度梯度的因素:一个模型研究。

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摘要

OBJECTIVE: There is very little information on the gradients of oxygen concentration from the synovial surface to the subchondral bone in articular cartilage. Cartilage is usually regarded as hypoxic, even though cellular metabolism is inhibited at low oxygen concentrations. We therefore measured rates of cellular consumption of oxygen and used these rates to calculate oxygen tension profiles across articular cartilage. METHODS: The rate of oxygen consumption by bovine articular chondrocytes was measured in vitro, either in intact cartilage slices or in isolated chondrocytes. The oxygen tension profile across articular cartilage was predicted by solving a 1-dimensional reaction-diffusion equation. The effect of synovial fluid oxygen concentration, cell density, cartilage thickness, and influx of oxygen from the subchondral bone on the oxygen profile in the tissue was examined. RESULTS: Oxygen consumption rates were relatively independent of oxygen tension at high oxygen tensions (5-21%), where they were approximately 10 nmoles/10(6) cells/hour for both isolated chondrocytes and for cartilage slices. Below 5% oxygen, the rate fell in an oxygen tension-dependent manner. Analysis showed that the oxygen profile across cartilage fell steeply in all but the thinnest cartilage samples but only fell to approximately 1% for low oxygen tensions in synovial fluid, with no supply from the subchondral bone. CONCLUSION: The oxygen tension in normal cartilage is not likely to fall to 1% except under abnormal conditions. Oxygen tensions within cartilage are strongly affected by a number of factors, including oxygen concentrations in synovial fluid, cartilage thickness, cell density, and cellular oxygen consumption rates. Supply from the subchondral bone may be of particular importance.
机译:目的:关于关节软骨中从滑膜表面到软骨下骨的氧气浓度梯度的信息很少。即使在低氧浓度下细胞代谢受到抑制,软骨也通常被认为是缺氧的。因此,我们测量了细胞耗氧的速率,并使用这些速率来计算跨关节软骨的氧气张力分布。方法:体外测量完整软骨切片或分离的软骨细胞中牛关节软骨细胞的耗氧率。通过求解一维反应扩散方程,可以预测跨关节软骨的氧气张力分布。检查了滑液中的氧气浓度,细胞密度,软骨厚度以及来自软骨下骨的氧气流入对组织中氧气分布的影响。结果:在高氧张力下(5-21%),耗氧率与氧张力相对无关,对于分离的软骨细胞和软骨切片,耗氧率约为10 nmoles / 10(6)细胞/小时。低于5%的氧气,该速率以与氧气张力有关的方式下降。分析表明,除了最薄的软骨样品外,所有软骨中的氧气分布都急剧下降,但由于滑液中的低氧气张力,软骨下骨的氧气供应仅下降至大约1%。结论:除了异常情况外,正常软骨中的氧张力不可能下降到1%。软骨内的氧气张力受到许多因素的强烈影响,包括滑液中的氧气浓度,软骨厚度,细胞密度和细胞耗氧率。软骨下骨的供应可能特别重要。

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  • 作者

    Zhou, S; Cui, Z; Urban, JP;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 eng
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