首页> 外文期刊>The Journal of Allergy and Clinical Immunology >Selective downregulation of prostaglandin E2-related pathways by the Th2 cytokine IL-13.
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Selective downregulation of prostaglandin E2-related pathways by the Th2 cytokine IL-13.

机译:Th2细胞因子IL-13选择性下调前列腺素E2相关途径。

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BACKGROUND: Levels of COX-2 and downstream products, such as prostaglandin (PG) E2, are increased in inflammatory settings after stimulation by IL-1beta, LPS, and other innate factors. Although the TH2 cytokines IL-4 and IL-13 have been reported to decrease COX-2 levels in some cell types, neither the effect of these cytokines on other PGE2-related pathways nor their effect in primary human airway epithelial cells has been evaluated. OBJECTIVE: To determine the impact of IL-13 on PGE2 pathways in primary human airway epithelial cells. METHODS: Because PGE2 has anti-inflammatory, antifibrotic, and bronchodilating properties of relevance to asthma, the effect of IL-13 (10 ng/mL for 10 days) on PGE2 pathway elements in first-passage air-liquid interface epithelial cells from 8 endobronchial brushings (5 asthmatic subjects and 3 healthy subjects) was evaluated. mRNA and protein levels for COX-1 and COX-2, membrane-bound PGE synthase 1, 15-PG dehydrogenase, and the receptors EP2 and EP4 were quantified by means of real-time PCR and Western blotting. PGE2 levels in the supernatants were measured by means of enzyme immunoassay. RESULTS: IL-13 significantly inhibited the PGE2 synthetic pathways COX-2 and PGE synthase 1 while upregulating the PGE2 metabolizing enzyme 15-PG dehydrogenase. These enzymatic changes associated and correlated with decreased supernatant PGE2 levels. Significant reductions in the mRNA for EP2 (but not EP4) were also observed. Changes in the PG pathway were both time and dose dependent (n = 3). CONCLUSION: These data suggest that IL-13 induces systematic modulation of proteins related to the production, catabolism, and function of PGE2, which might alter inflammatory and immune responses at the level of the epithelium and the submucosa below. CLINICAL IMPLICATIONS: Modulation of PGE2 pathways by IL-13 might alter inflammatory and repair processes in asthma.
机译:背景:在受到IL-1beta,LPS和其他先天因素刺激后,炎症环境中COX-2和下游产物(如前列腺素(PG)E2)的水平升高。尽管已经报道了TH2细胞因子IL-4和IL-13在某些细胞类型中降低了COX-2的水平,但尚未评估这些细胞因子对其他PGE2相关途径的作用,也未评估它们在人气道上皮细胞中的作用。目的:确定IL-13对人原代呼吸道上皮细胞中PGE2途径的影响。方法:由于PGE2具有与哮喘相关的抗炎,抗纤维化和支气管扩张特性,因此IL-13(10 ng / mL持续10天)对来自8代第一代气液界面上皮细胞PGE2途径元素的影响评估支气管内刷牙(5名哮喘受试者和3名健康受试者)。通过实时PCR和Western印迹对COX-1和COX-2,膜结合的PGE合酶1、15-PG脱氢酶以及受体EP2和EP4的mRNA和蛋白水平进行定量。通过酶免疫测定法测量上清液中的PGE 2水平。结果:IL-13显着抑制PGE2合成途径COX-2和PGE合酶1,同时上调PGE2代谢酶15-PG脱氢酶。这些酶促变化与上清液PGE2水平降低相关并相关。还观察到EP2(但不是EP4)mRNA的显着降低。 PG途径的变化既依赖于时间,又依赖于剂量(n = 3)。结论:这些数据表明IL-13诱导与PGE2的产生,分解代谢和功能有关的蛋白质的系统调节,这可能会改变以下上皮和粘膜下层的炎症和免疫反应。临床意义:IL-13对PGE2途径的调节可能会改变哮喘的炎症和修复过程。

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