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Reactive Oxygen Species Released from Hypoxic Hepatocytes Regulates MMP-2 Expression in Hepatic Stellate Cells

机译:缺氧肝细胞释放的活性氧调节肝星状细胞中MMP-2的表达。

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摘要

Hypoxia is a common environmental stress factor and is associated with fibrogenesis. Matrix metalloproteinase-2 (MMP-2), produced by hepatic stellate cells (HSCs), plays an important role in liver fibrogenesis. However, inconsistent results have been reported on the impact of hypoxia on MMP-2 expression and activity in HSCs. We speculated that cell–cell interaction is involved in the regulation of MMP-2 expression and activity at low oxygen level in vivo. Therefore, in this report we investigated the mechanism by which hypoxic hepatocytes regulates MMP-2 expression in HSCs. Our results showed that the conditioned medium from hypoxia-treated rat hepatocytes strongly induced the expression of MMP-2 mRNA and protein in rat HSC-T6 cells. Reduced glutathione neutralized ROS released from hypoxic hepatocytes, leading to reduced MMP-2 expression in HSC-T6 cells. In addition, phospho-IκB-α protein level was increased in HSC-T6 cells treated with hypoxia conditioned medium, and NF-κB signaling inhibitor inhibited MMP-2 expression in HSC-T6 cells. Taken together, our data suggest that ROS is an important factor released by hypoxic hepatocytes to regulate MMP-2 expression in HSCs, and NF-κB signaling is crucially involved in ROS-induced MMP-2 expression in HSCs. Our findings suggest that strategies aimed at antagonizing the generation of ROS in hypoxic hepatocytes and inhibiting NF-κB signaling in HSCs may represent novel therapeutic options for liver fibrosis.
机译:缺氧是常见的环境压力因素,并与纤维生成有关。肝星状细胞(HSC)产生的基质金属蛋白酶-2(MMP-2)在肝纤维化中起重要作用。然而,关于缺氧对HSCs中MMP-2表达和活性影响的报道不一致。我们推测细胞间相互作用在体内低氧水平下参与MMP-2表达和活性的调节。因此,在本报告中,我们研究了缺氧肝细胞调节HSC中MMP-2表达的机制。我们的结果表明,来自缺氧处理的大鼠肝细胞的条件培养基强烈诱导了大鼠HSC-T6细胞中MMP-2 mRNA和蛋白的表达。减少的谷胱甘肽可中和低氧肝细胞释放的ROS,从而导致HSC-T6细胞中MMP-2表达减少。此外,用缺氧条件培养基处理的HSC-T6细胞中磷酸-IκB-α蛋白水平升高,而NF-κB信号抑制剂抑制HSC-T6细胞中MMP-2的表达。综上所述,我们的数据表明,ROS是缺氧肝细胞释放的重要因子,以调节HSC中MMP-2的表达,而NF-κB信号传导则与ROS诱导HSCs中MMP-2的表达密切相关。我们的发现表明,旨在拮抗缺氧性肝细胞中ROS生成并抑制HSC中NF-κB信号传导的策略可能代表了肝纤维化的新治疗选择。

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