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首页> 外文期刊>The journal of immunology >IL-33 Enhances Lipopolysaccharide-Induced Inflammatory Cytokine Production from Mouse Macrophages by Regulating Lipopolysaccharide Receptor Complex
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IL-33 Enhances Lipopolysaccharide-Induced Inflammatory Cytokine Production from Mouse Macrophages by Regulating Lipopolysaccharide Receptor Complex

机译:IL-33通过调节脂多糖受体复合物增强脂多糖诱导的小鼠巨噬细胞炎症细胞因子的产生。

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Bacterial LPS triggers monocytes and macrophages to produce several inflammatory cytokines and mediators. However, once exposed to LPS, they become hyporesponsive to a subsequent endotoxin challenge. This phenomenon is defined as LPS desensitization or tolerance. Previous studies have identified some components of the biochemical pathways involved in negative modulation of LPS responses. In particular, it has been shown that the IL-1R-related protein ST2 could be implicated in LPS tolerance. The natural ligand of ST2 was recently identified as IL-33, a new member of the IL-1 family. In this study, we investigated whether IL-33 triggering of ST2 was able to induce LPS desensitization of mouse macrophages. We found that IL-33 actually enhances the LPS response of macrophages and does not induce LPS desensitization. We demonstrate that this IL-33 enhancing effect of LPS response is mediated by the ST2 receptor because it is not found in ST2 knockout mice. The biochemical consequences of IL-33 pretreatment of mouse macrophages were investigated. Our results show that IL-33 increases the expression of the LPS receptor components MD2 (myeloid differentiation protein 2) and TLR-4, the soluble form of CD14 and the MyD88 adaptor molecule. In addition, IL-33 pretreatment of macrophages enhances the cytokine response to TLR-2 but not to TLR-3 ligands. Thus, IL-33 treatment preferentially affects the MyD88-dependent pathway activated by the TLR.
机译:细菌LPS触发单核细胞和巨噬细胞产生几种炎性细胞因子和介质。但是,一旦暴露于LPS,它们就会对随后的内毒素攻击反应低下。这种现象被定义为LPS脱敏或耐受性。先前的研究已经确定了LPS反应负调控中涉及的生化途径的某些成分。特别地,已经显示IL-1R相关蛋白ST2可能与LPS耐受性有关。 ST2的天然配体最近被鉴定为IL-1家族的新成员IL-33。在这项研究中,我们调查了IL-33触发ST2是否能够诱导LPS脱敏的小鼠巨噬细胞。我们发现IL-33实际上增强了巨噬细胞的LPS反应,并且不会引起LPS脱敏。我们证明了这种LPS反应的IL-33增强作用是由ST2受体介导的,因为在ST2敲除小鼠中未发现它。研究了IL-33预处理小鼠巨噬细胞的生化后果。我们的结果表明,IL-33增加了LPS受体组分MD2(髓样分化蛋白2)和TLR-4,CD14的可溶形式和MyD88衔接子分子的表达。另外,巨噬细胞的IL-33预处理可增强细胞因子对TLR-2的应答,但不能增强对TLR-3配体的应答。因此,IL-33治疗优先影响TLR激活的MyD88依赖性途径。

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