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首页> 外文期刊>Journal of cellular biochemistry. >Selenoorganic compound, ebselen, inhibits nitric oxide and tumor necrosis factor-alpha production by the modulation of jun-N-terminal kinase and the NF-kappab signaling pathway in rat Kupffer cells.
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Selenoorganic compound, ebselen, inhibits nitric oxide and tumor necrosis factor-alpha production by the modulation of jun-N-terminal kinase and the NF-kappab signaling pathway in rat Kupffer cells.

机译:硒代有机化合物ebselen通过调节大鼠Kupffer细胞中的jun-N-末端激酶和NF-kappab信号通路来抑制一氧化氮和肿瘤坏死因子-α的产生。

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摘要

In response to the bacterial endotoxin, LPS, Kupffer cells are induced to express NO and TNF-alpha. These compounds are involved in hepatic inflammation/injury, especially that associated with endotoxic shock. In this study, we demonstrate that ebselen (2-phenyl-1,2-benzisoselenazol-3[2H]one), a selenoorganic compound, blocks LPS-induced NO and TNF-alpha production by cultured rat liver Kupffer cells. LPS can activate both the NF-kappaB signaling pathway and MAPK signal transduction pathways such as JNK and p38 MAPK. We find that ebselen inhibits LPS-induced NF-kappaB nuclear translocalization, and also suppresses the LPS-induced phosphorylation of JNK, but not the phosphorylation of p38 MAPK. This inhibition of signal transduction leads to a decrease in the transcription of TNF-alpha and the inducible isoform of NO. Furthermore, ebselen inhibits LPS-induced COX-2 expression, which is responsible for proinflammatory prostaglandin production, without affecting constitutive COX-1 expression. These data suggest the mechanism by which ebselen acts as an antiinflammatory agent, and also suggest that ebselen may be potent in preventing hepatic injury such as endotoxic shock, in which Kupffer cell activation has been implicated. Copyright 2000 Wiley-Liss, Inc.
机译:响应细菌内毒素LPS,诱导枯否细胞表达NO和TNF-α。这些化合物与肝脏炎症/损伤有关,尤其是与内毒素性休克有关的炎症/损伤。在这项研究中,我们证明依柏硒烯(2-苯基-1,2-苯并硒代咪唑-3 [2H] one)是一种硒代有机化合物,可通过培养的大鼠肝Kupffer细胞阻断LPS诱导的NO和TNF-α的产生。 LPS可以激活NF-kappaB信号通路和MAPK信号转导通路,例如JNK和p38 MAPK。我们发现依布硒仑抑制LPS诱导的NF-kappaB核转位,并且还抑制LPS诱导的JNK的磷酸化,但不抑制p38 MAPK的磷酸化。信号转导的这种抑制导致TNF-α的转录和可诱导的NO异构体减少。此外,依布硒仑抑制LPS诱导的COX-2表达,而后者负责促炎性前列腺素的产生,而不影响组成型COX-1表达。这些数据表明依布硒仑充当抗炎剂的机理,并且还暗示依布硒仑可能有效预防肝损伤,例如内毒素休克,其中涉及了库普弗细胞的活化。版权所有2000 Wiley-Liss,Inc.

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