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Molecular interactions between human cartilaginous endplates and nucleus pulposus cells: A preliminary investigation

机译:人软骨终板与髓核细胞之间的分子相互作用:初步研究

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STUDY DESIGN.: Conditioned media (CM) of cartilaginous endplates (CEPs) of intervertebral discs were analyzed in a bioassay with regard to their influence on matrix turnover and inflammatory factors on nucleus pulposus (NP) cells of the same patient. CEP tissue underwent further histological and ultrastructural analysis. OBJECTIVE.: To identify possible interactions between the CEP and the disc via molecular factors that may influence disc matrix degradation and to determine degenerative changes of CEP tissue. SUMMARY OF BACKGROUND DATA.: Impaired endplate perme-ability due to degeneration and calcification is considered to be a key contributor to disc degeneration. An upregulation of metalloproteinases and inflammatory cytokines has been observed in degenerated intervertebral discs. Possibly, the CEP contributes to the regulation of disc matrix degradation via molecular interactions with the disc tissue. METHODS.: CEP and NP cells from the same patients (n = 6) were investigated in a bioassay with regard to their influence on matrix turnover and inflammatory factors. We determined gene expression of NP cells in alginate beads that were exposed to CM of CEP punches (CEP-CM) from the same patients. The CEP-CMs were analyzed by protein array for inflammatory cytokines. Further CEP samples underwent histological (n = 15) and ultrastructural analysis (n = 8) to determine alterations of cell and matrix structure. RESULTS.: NP cells exposed to their donor-corresponding CEP-CM significantly upregulated interleukins (IL-6, IL-8) and matrix metalloproteinase (MMP-3, MMP-13) expression, and significantly decreased aggrecan and collagen type 2 expression. Proinflammatory cytokines were identified in the CEP-CM. The occurrence of apoptotic cells and degraded matrix fragments varied strongly between donors. CONCLUSION.: Our results indicate interactions between the CEP and the NP tissue via molecular factors that upregulate matrix degrading enzymes and inflammatory cytokines and thereby influence the pathophysiology of disc degeneration. Ongoing investigations will further identify the regulative role of potential molecular factors that are responsible for these degenerative alterations.
机译:研究设计:在生物测定中,分析了椎间盘软骨终板(CEP)的条件培养基(CM)对同一患者的髓核周转(NP)细胞的基质更新和炎症因子的影响。 CEP组织进行了进一步的组织学和超微结构分析。目的:通过可能影响椎间盘基质降解的分子因素,确定CEP与椎间盘之间的可能相互作用,并确定CEP组织的变性变化。背景数据摘要:由于变性和钙化而导致的终板渗透性受损,被认为是导致椎间盘退变的关键因素。在退化的椎间盘中观察到金属蛋白酶和炎性细胞因子的上调。 CEP可能通过与椎间盘组织的分子相互作用来促进椎间盘基质降解的调节。方法:对来自同一患者(n = 6)的CEP和NP细胞对基质更新和炎症因子的影响进行了生物测定。我们确定了藻酸盐珠中NP细胞的基因表达,藻酸盐珠暴露于来自同一患者的CEP冲头CM(CEP-CM)。通过蛋白质阵列分析CEP-CM的炎性细胞因子。进一步的CEP样品进行了组织学(n = 15)和超微结构分析(n = 8),以确定细胞和基质结构的变化。结果:暴露于其供体对应的CEP-CM的NP细胞显着上调白介素(IL-6,IL-8)和基质金属蛋白酶(MMP-3,MMP-13)的表达,并显着降低聚集蛋白聚糖和2型胶原蛋白的表达。在CEP-CM中鉴定出促炎细胞因子。供体之间凋亡细胞和降解的基质片段的发生变化很大。结论:我们的结果表明CEP和NP组织之间的相互作用是通过分子因子上调基质降解酶和炎性细胞因子,从而影响椎间盘退变的病理生理。正在进行的研究将进一步确定导致这些退行性改变的潜在分子因素的调节作用。

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