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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Nucleus pulposus cell response to confined and unconfined compression implicates mechanoregulation by fluid shear stress.
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Nucleus pulposus cell response to confined and unconfined compression implicates mechanoregulation by fluid shear stress.

机译:髓核细胞对局限性和无局限性压缩的反应牵涉到流体剪切应力引起的机械调节。

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Mechanical loading of the intervertebral disc (IVD) plays an important role in governing the function of nucleus pulposus (NP) cells. In situ, the loading environment of the NP is neither fully confined nor unconfined. To investigate the potential influences of these idealized loading modes, we utilized an alginate cell culture system to compare the effects of 1 h confined and unconfined compression on glycoprotein gene expression in mixed population NP cells. For dynamic compression, we applied 10 kPa peak stress using a sinusoidal waveform at 0.5 Hz. For static compression, displacements were applied at a constant rate and held at 20% strain. Aggrecan, laminin, fibronectin, glypican, biglycan, and fibromodulin were generally stimulated, and trends were similar between confined and unconfined compression. On the other hand, lumican expression was differentially regulated between confined and unconfined groups. More interestingly, trends under static loading were opposite that under dynamic loading; lumican was upregulated in static confined compression and in dynamic unconfined compression. We theorize that this pattern is indicative of regulation by fluid flow within loaded alginate disks. Calculations using the linear biphasic model suggest that spatial pressure gradients exist in static confined specimens for the majority of the loading duration. Using a parallel plate flow chamber, we report for the first time that NP cells are sensitive to fluid shear stress and confirm that lumican expression can be regulated by short durations of exposure to fluid shear.
机译:椎间盘(IVD)的机械负荷在控制髓核(NP)细胞的功能中起重要作用。在原地,NP的装载环境既没有完全封闭也没有封闭。为了研究这些理想加载方式的潜在影响,我们利用藻酸盐细胞培养系统比较了1 h限制和无限制压缩对混合群体NP细胞糖蛋白基因表达的影响。对于动态压缩,我们使用0.5 Hz的正弦波形施加10 kPa峰值应力。对于静态压缩,以恒定速率施加位移并保持20%的应变。通常刺激Aggrecan,层粘连蛋白,纤连蛋白,glypican,biglycan和纤维调节蛋白,并且在密闭和无密压缩之间的趋势相似。另一方面,在密闭组和未密闭组之间,lumican的表达受到差异调节。更有趣的是,静态负荷下的趋势与动态负荷下的趋势相反。 Lumican在静态限制压缩和动态无限制压缩中上调。我们推论该模式指示了负载藻酸盐盘内流体流动的调节。使用线性双相模型的计算表明,在大部分加载时间内,静态密闭样本中都存在空间压力梯度。使用平行板流动室,我们首次报道NP细胞对流体剪切应力敏感,并确认lumican的表达可以通过短时间暴露于流体剪切来调节。

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