Department of Orthopaedic Surgery, Carolinas Medical Center, PO Box 32861, Charlotte, NC 28232, USA.
Exp Mol Pathol. 2012 Feb;92(1):59-63. doi: 10.1016/j.yexmp.2011.09.008. Epub 2011 Sep 14.
Matrix metalloproteinase (MMP) regulation and expression is important in the aging/degenerating human intervertebral disc. MMP-26 (also known as matrilysin-2 or endometase) is a newly discovered MMP which degrades type IV collagen, fibronectin, fibrinogen, vitronectin, denatured collagen types I-IV, insulin-like growth factor binding protein 1, and activated pro-MMP-9. Our objective here was to determine if it is present in human disc tissue and cultured disc cells. Immunohistochemistry and microarray gene expression analyses were used to evaluate the presence of MMP-26 in human disc tissue from healthy and degenerated discs. Immunohistochemistry was also applied to human annulus cells cultured in a collagen sponge. Cellular and matrix localization of MMP-26 was identified in the outer and inner annulus and in the nucleus pulposus. Fewer cells showed localization in the inner vs. outer annulus, and localization was sparse in the nucleus. During in vitro culture of annulus cells, MMP-26 was also expressed. Molecular analyses showed significant downregulation of expression of MMP-26 (p=0.03), and significant 9.8-fold upregulation of TGF-beta (p=0.01) in more degenerated discs vs. healthier discs. Findings document the first identification of MMP-26 in the disc at the molecular and protein levels. Results point to the potentially important role of MMP-26 in matrix modulation during disc health and degeneration.
基质金属蛋白酶(MMP)的调节和表达在衰老/退变的人类椎间盘组织中非常重要。MMP-26(也称为基质溶解素-2 或子宫内膜酶)是一种新发现的 MMP,可降解 IV 型胶原、纤维连接蛋白、纤维蛋白原、玻连蛋白、变性的 I-IV 型胶原、胰岛素样生长因子结合蛋白 1 和激活的 pro-MMP-9。我们的目的是确定它是否存在于人类椎间盘组织和培养的椎间盘细胞中。免疫组织化学和微阵列基因表达分析用于评估 MMP-26 在健康和退变椎间盘组织中的存在。免疫组织化学也应用于在胶原海绵中培养的人环状细胞。在外层和内层环状组织和核髓核中鉴定出 MMP-26 的细胞和基质定位。与外层相比,内层的细胞定位较少,核内的定位稀疏。在环状细胞的体外培养过程中,也表达了 MMP-26。分子分析显示,退变程度较高的椎间盘组织中 MMP-26 的表达显著下调(p=0.03),TGF-β的表达显著上调 9.8 倍(p=0.01)。研究结果首次在分子和蛋白水平上证明了 MMP-26 在椎间盘组织中的存在。结果表明,MMP-26 在椎间盘健康和退变过程中对基质调节具有潜在的重要作用。