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Lubricin Deficiency in the Murine Lumbar Intervertebral Disc Results in Elevated Torsional Apparent Modulus

机译:鼠腰椎间盘润滑不足导致扭转表观模量升高

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摘要

The purpose of this study was to investigate the mechanical consequences of proteoglycan 4 (Prg4) deficiency on intervertebral disc mechanics using a Prg4 knockout mouse model. Prg4, also called lubricin, was first identified as the boundary lubricant in synovial fluid but has subsequently been localized within a number of musculoskeletal tissues in areas subjected to shear and tensile stresses, including the intervertebral disc. The function of lubricin in the intervertebral disc has not been determined. Lumbar level 1–2 vertebral body-disc-vertebral body motion segments were isolated from Prg4 null mice and wild type (WT) litter mate controls. Disc dimensions were measured and motion segments were tested in axial loading and torsion. Torque measurements and disc dimensions were used to calculate the torsional apparent modulus for discs from Prg4 null and WT discs. Discs from Prg4 null mice had a significantly smaller mean transverse disc area (p=0.0057), with a significantly larger proportion of this area occupied by the nucleus pulposus (p<0.0001), compared to WT specimens. Apparent torsional moduli were found to be elevated in Prg4 null lumbar discs compared to WT controls at 10–10° (p=.0048) and 10–30° (p=0.0127) rotation. This study suggests a functional role for Prg4 in the murine intervertebral disc. The absence of Prg4 was associated with an increased apparent torsional modulus and the structural consequences of Prg4 deficiency in the intervertebral disc, with expansion of the area of the nucleus pulposus relative to the transverse disc area in Prg4 null specimens.
机译:这项研究的目的是调查使用Prg4基因敲除小鼠模型的蛋白聚糖4(Prg4)缺乏对椎间盘力学的机械后果。 Prg4,也称为lubricin,首先被鉴定为滑液中的边界润滑剂,但随后被定位在遭受剪切应力和拉伸应力的区域(包括椎间盘)的许多肌肉骨骼组织内。润滑脂在椎间盘中的功能尚未确定。腰椎1-2级椎体-椎间盘-椎体运动节段是从Prg4无效小鼠和野生型(WT)同伴对照中分离出来的。测量盘的尺寸,并测试运动段的轴向载荷和扭转。扭矩测量和光盘尺寸用于根据Prg4 null和WT光盘计算光盘的扭转表观模量。与野生型标本相比,Prg4缺失小鼠的椎间盘的平均横向椎间盘面积明显较小(p = 0.0057),髓核占据的面积显着更大(p <0.0001)。与WT对照相比,在旋转10–10°(p = .0048)和10–30°(p = 0.0127)时,Prg4无腰椎间盘的明显扭转模量升高。这项研究表明Prg4在小鼠椎间盘中的功能作用。 Prg4的缺失与椎间盘中表观扭转模量的增加和Prg4缺乏的结构后果有关,并且在Prg4无效标本中,髓核的面积相对于横向椎间盘的面积扩大。

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