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首页> 外文期刊>Journal of Clinical Immunology >Glucocorticoid receptor-beta up-regulation and steroid resistance induction by IL-17 and IL-23 cytokine stimulation in peripheral mononuclear cells.
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Glucocorticoid receptor-beta up-regulation and steroid resistance induction by IL-17 and IL-23 cytokine stimulation in peripheral mononuclear cells.

机译:外周血单个核细胞中IL-17和IL-23细胞因子刺激糖皮质激素受体β上调和类固醇抗性诱导。

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Most asthmatic patients have well controlled symptoms with regular treatment, but some require much higher doses of inhaled and oral corticosteroids, or in rare cases fail to respond; these patients may present Th-17 cell infiltration and associated cytokines (IL-17A and -F) in the airways, sputum and peripheral blood. Because glucocorticoid receptor-beta (GR-beta) is associated with corticosteroid resistance, we investigated whether Th-17 associated cytokines induce steroid insensitivity in PBMCs via GR-beta up-regulation.GR-alpha, GR-beta, GILZ and IL-6 expression were analyzed in PBMCs stimulated with IL-2/IL-4, IL-17A/IL-17F and IL-23 cytokines by quantitative RT-PCR. Dexamethasone-inhibition of PHA-induced proliferation and Dexamethasone-induced apoptosis were determined by either (3)H-thymidine or CFSE-labelled cells and by Annexin-V staining and flow cytometry.IL-17 and IL-23 cytokines significantly increased GR-beta expression. IL-2/IL-4 significantly decreased GR-alpha expression without affecting GR-beta. IL17, IL-23 and IL2?+?4 stimulations significantly hampered Dexamethasone-inhibition of proliferation (Dex EC(50) for: IL-17A?+?F?=?251 nM; IL-23?=?435 nM; IL2?+?4?=?950 nM; Medium?=?90 nM). IL2?+?4 and IL17A?+?F but not IL-23, significantly hampered Dexamethasone-induced apoptosis (1400 and 320 nM Dex, respectively). Dexamethasone's trans-activation of GILZ and trans-repression of NF-kB-driven IL-6 expression were both inhibited by IL2?+?4; IL17?+?IL23 antagonized Dex trans-repression in PBMC from asthmatics.GR-beta up-regulation by IL-17/IL-23 cytokines is associated with induced steroid insensitivity in PBMCs, observed as diminished Dexamethasone's effects on cell proliferation, apoptosis and gene regulation. Steroid resistance induced by IL-2/IL-4 was associated with decreased GR-alpha expression. This study supports the possibility that Th-17 lymphocytes and associated cytokines play a role in the mechanism of steroid hypo-responsiveness in severe asthmatics.
机译:大多数哮喘患者在接受常规治疗后症状得到很好控制,但有些患者需要吸入和口服糖皮质激素的剂量更高,或者在极少数情况下无反应;这些患者可能在气道,痰和外周血中出现Th-17细胞浸润和相关的细胞因子(IL-17A和-F)。由于糖皮质激素受体-β(GR-β)与糖皮质激素抵抗有关,因此我们研究了Th-17相关细胞因子是否通过GR-β上调诱导PBMC中的类固醇不敏感.GR-α,GR-β,GILZ和IL-6通过定量RT-PCR分析在用IL-2 / IL-4,IL-17A / IL-17F和IL-23细胞因子刺激的PBMC中的表达。地塞米松抑制PHA诱导的增殖和地塞米松诱导的凋亡通过(3)H-胸苷或CFSE标记的细胞以及Annexin-V染色和流式细胞术确定.IL-17和IL-23细胞因子显着增加GR- beta表达。 IL-2 / IL-4显着降低了GR-alpha的表达,而不会影响GR-beta。 IL17,IL-23和IL2?+?4刺激显着阻碍了地塞米松抑制增殖(Dex EC(50)表示:IL-17A?+?F?=?251 nM; IL-23?=?435 nM; IL2 Δ+Δ4Δ=Δ950nM;中等Δ=Δ90nM)。 IL2α+α4和IL17Aβ+αF而不是IL-23显着阻碍了地塞米松诱导的细胞凋亡(分别为1400和320nM Dex)。地塞米松对GILZ的反式激活和对NF-kB驱动的IL-6表达的反式抑制均被IL2β+β4抑制。 IL17 +?IL23拮抗哮喘患者PBMC中的Dex反式抑制。IL-17/ IL-23细胞因子对GR-β的上调与诱导的PBMC中类固醇不敏感有关,观察到地塞米松对细胞增殖,凋亡和凋亡的影响减弱。基因调控。 IL-2 / IL-4诱导的类固醇抗性与GR-alpha表达降低有关。这项研究支持Th-17淋巴细胞和相关细胞因子在严重哮喘患者的类固醇低反应性机制中起作用的可能性。

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