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Influence of inflammasome pathway activation in macrophages on the matrix metalloproteinase expression of human hepatic stellate cells

机译:炎症途径活化在巨噬细胞对人肝星状细胞中基质金属蛋白酶表达的影响

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Inflammasomes are protein complexes that produce IL-1 beta in response to damage or pathogens. As such, inflammasomes are involved in several types of hepatic fibrosis. However, the mechanisms by which these complexes drive the liver's fibrogenic status remain unclear. We co-cultured differentiated macrophages (the THP-1 cell line or human monocyte-derived macrophages (MDMs)) with human hepatic fibroblasts (either the LX-2 cell line or primary human hepatic stellate cells (HSCs)). The inflammasome pathway was activated with lipopolysaccharide (LPS) and monosodium urate (MSU) crystals, and the HSCs' responses were analyzed. Our results show that co-culture of HSCs with THP-1 cells upregulated transcription of the genes coding for metalloproteinase (MMP)-3 and MMP-9. After inflammasome pathway activation, the HSCs' phenotype was the same in the presence of THP-1 cells or MDMs (i.e. upregulation of MMP-3, MMP-9, and the pro-inflammatory cytokine IL-1 beta). We found that two cytokines were involved in these changes: IL-1 beta regulated MMP-3 and IL-1 beta mRNA expression, whereas TNF-alpha regulated MMP-9 mRNA expression. Experiments with primary cells revealed that a general inflammatory environment is responsible for the downregulation of pro-fibrotic markers. Our present results suggest that inflammasome pathway activation in macrophages leads to a pro-inflammatory environment for HSCs leading to MMP/TIMP imbalance and enhanced fibrolytic properties.
机译:炎症是蛋白质复合物,其响应损伤或病原体产生IL-1β。因此,炎性血症涉及几种类型的肝纤维化。然而,这些复合物驱动肝脏纤维原状的机制仍然尚不清楚。我们将与人肝成纤维细胞(LX-2细胞系或原发性人肝星状细胞(HSC))共同培养分化的巨噬细胞(THP-1细胞系或人单核细胞衍生的巨噬细胞(MDMS))。用脂多糖(LPS)和单钠催化(MSU)晶体激活炎症途径,分析HSCS的响应。我们的结果表明,具有THP-1细胞的HSCs的共同培养上调了编码金属蛋白酶(MMP)-3和MMP-9的基因的转录。在炎症途径激活后,HSCS的表型在THP-1细胞或MDMS存在下是相同的(即MMP-3,MMP-9和促炎细胞因子IL-1β的上调)。我们发现两种细胞因子参与了这些变化:IL-1β调节的MMP-3和IL-1βmRNA表达,而TNF-α调节MMP-9 mRNA表达。用原发性细胞的实验表明,一般炎性环境负责促纤维化标记的下调。我们的目前的结果表明,巨噬细胞的炎症途径活化导致HSC的促炎环境,导致MMP / TIMP不平衡和增强的纤维溶解性。

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