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首页> 外文期刊>European Cells & Materials >Poroelastic behaviour of the degenerating human intervertebral disc: a ten-day study in a loaded disc culture system
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Poroelastic behaviour of the degenerating human intervertebral disc: a ten-day study in a loaded disc culture system

机译:退化性人椎间盘的多孔弹性行为:在加载的椎间盘培养系统中进行的十天研究

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The intervertebral disc (IVD) allows flexibility to the vertebral column, and transfers the predominant axial loads during daily activities. Its axial biomechanical behaviour is poroelastic, due to the water-binding and releasing capacity of the nucleus pulposus. Degeneration of the intervertebral disc presumably affects both the instantaneous elastic response to the load on the IVD and the subsequent interstitial flow of fluid. This study aims to quantify the poroelastic behaviour of the IVD and its change with degeneration, as defined by the magnetic resonance imaging-based Pfirrmann Score (PS). For a period of ten days, 36 human lumbar IVDs were loaded with a simulated physiological axial loading regime, while deformation was monitored. The IVDs responded to the loads with instantaneous elastic and slow poroelastic axial deformation. Several mechanical parameters changed throughout the first five days of the experiment, until the IVDs settled into a dynamic equilibrium. In this equilibrium, degeneration was significantly related to a decrease in disc height loss during the daytime high load phase (ρ = -0.49), and to a decrease in the rate of this deformation during the final half hour of each day (ρ = -0.53). These properties were related to the nucleus glycosaminoglycan/hydroxyproline (GAG/HYP) ratio, rather than GAG content alone, indicating that remodelling of the extracellular matrix reduces poroelastic properties of the IVD. This implies that the degenerated discs have a reduced capacity to bind water and/or a reduced resistance against fluid flow. The resulting loss in hydrostatic pressure may further change cell behaviour in the nucleus pulposus.
机译:椎间盘(IVD)可以使脊柱灵活,并在日常活动中传递主要的轴向载荷。由于髓核的水结合和释放能力,其轴向生物力学行为是多孔的。椎间盘的退化可能会影响对IVD负荷的瞬时弹性响应以及随后的组织间液流动。这项研究旨在量化IVD的多孔弹性行为及其随变性的变化,这是基于基于磁共振成像的Pfirrmann评分(PS)定义的。在十天的时间内,将36个人体腰椎IVD加载了模拟的生理轴向加载方案,同时监测了变形。 IVD对载荷的响应是瞬时弹性和缓慢的多孔弹性轴向变形。在实验的前五天中,一些机械参数发生了变化,直到IVD达到动态平衡为止。在这种平衡下,退化与白天高负荷阶段的椎间盘高度损失减少(ρ= -0.49)和每天最后半小时的变形率降低(ρ=- 0.53)。这些性质与细胞核糖胺聚糖/羟脯氨酸(GAG / HYP)之比有关,而不是与单独的GAG含量有关,表明细胞外基质的重塑降低了IVD的多孔弹性。这意味着退化的盘具有减小的结合水的能力和/或减小的抵抗流体流动的阻力。静水压力的最终损失可能进一步改变髓核中的细胞行为。

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