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Matrix metalloproteinase expression levels suggest distinct enzyme roles during lumbar disc herniation and degeneration

机译:基质金属蛋白酶表达水平表明腰椎间盘突出症和变性期间的独特酶作用

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The disruption of the extracellular disc matrix is a major hallmark of disc degeneration. This has previously been shown to be associated with an up-regulation of major matrix metalloproteinase (MMP) expression and activity. However, until now hardly any data are available for MMP/TIMP regulation and thereby no concept exists as to which MMP/TIMP plays a major role in disc degeneration. The objective of this study was, therefore, to identify and quantify the putative up-regulation of MMPs/TIMPs on the mRNA and protein level and their activity in disc material in relation to clinical data and histological evidence for disc degeneration. A quantitative molecular analysis of the mRNA expression levels for the MMPs (MMPs-1, -2, -3, -7, -8, -9, -13) and the MMP inhibitors (TIMPs-1 and -2) was performed on 37 disc specimens obtained from symptomatic disc herniation or degeneration. In addition, disc specimens from patients without disc degeneration/herniation (=controls) were analyzed. Expression of MMPs-1, -2, -3, -7, -8, -9, -13 and TIMPs-1, -2 was analyzed using quantitative RT-PCR, normalized to the expression level of a house keeping gene (GAPDH). Gene expression patterns were correlated with MMP activity (in situ zymography), protein expression patterns (immunohistochemistry), degeneration score (routine histology) and clinical data. MMP-3 mRNA levels were consistently and substantially up-regulated in samples with histological evidence for disc degeneration. A similar but less pronounced up-regulation was observed for MMP-8. This up-regulation was paralleled by the expression of TIMP-1 and to a lesser extent TIMP-2. In general, these findings could be confirmed with regard to protein expression and enzyme activity. This study provides data on the gene and protein level, which highlights the key role of MMP-3 in the degenerative cascade leading to symptomatic disc degeneration and herniation. Control of the proteolytic activity of MMP-3 may, therefore, come into the focus when aiming to develop new treatment options for early disc degeneration.
机译:细胞外盘基质的破坏是盘变性的主要标志。先前已证明这与主要基质金属蛋白酶(MMP)的表达和活性上调有关。但是,到目前为止,几乎没有任何数据可用于MMP / TIMP调节,因此尚不了解哪个MMP / TIMP在光盘变性中起主要作用。因此,本研究的目的是鉴定和量化MMPs / TIMPs在mRNA和蛋白质水平上的假定上调及其在椎间盘材料中的活性,以及​​有关椎间盘退变的临床数据和组织学证据。对MMPs(MMPs-1,-2,-3,-7,-8,-9,-13)和MMP抑制剂(TIMPs-1和-2)的mRNA表达水平进行了定量分子分析。有症状的椎间盘突出症或变性获得的37个椎间盘标本。另外,分析了没有椎间盘退变/突出的患者的椎间盘标本(=对照)。使用定量RT-PCR分析MMPs-1,-2,-3,-7,-8,-9,-13和TIMPs-1,-2的表达,并标准化为管家基因(GAPDH)的表达水平)。基因表达模式与MMP活性(原位酶谱),蛋白质表达模式(免疫组织化学),变性评分(常规组织学)和临床数据相关。具有组织学证据的椎间盘退变的样本中,MMP-3 mRNA水平始终一致且基本上上调。对于MMP-8,观察到相似但不太明显的上调。这种上调与TIMP-1的表达平行,并且在较小程度上与TIMP-2的表达平行。通常,这些发现可以在蛋白质表达和酶活性方面得到证实。这项研究提供了有关基因和蛋白质水平的数据,突显了MMP-3在导致症状性椎间盘退变和突出的变性级联反应中的关键作用。因此,在为早期椎间盘退变开发新的治疗选择时,可能会重点控制MMP-3的蛋白水解活性。

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