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首页> 外文期刊>Journal of Reproductive Immunology >Decidual stromal cell-derived IL-33 contributes to Th2 bias and inhibits decidual NK cell cytotoxicity through NF-kappa B signaling in human early pregnancy
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Decidual stromal cell-derived IL-33 contributes to Th2 bias and inhibits decidual NK cell cytotoxicity through NF-kappa B signaling in human early pregnancy

机译:蜕膜基质细胞源性IL-33有助于Th2偏倚并通过NF-κB信号传导抑制人早期妊娠的蜕膜NK细胞毒性

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Decidual stromal cells (DSCs) are an important component of decidual tissues where they are in strict proximity with immune cells. Although previous research has indicated that DSCs participate in the regulation of immune cells during pregnancy, the crosstalk between DSCs and decidual NK cells (dNKs) has not been fully elucidated. The aim of this study was to ascertain the effect of DSC-derived IL-33 on dNK function and explore the underlying mechanism. Flow cytometry showed a considerable increase in ST2 expression on dNKs compared with peripheral NKs (pNKs). Subsequent research found that perforin production, granzyme A production, and the cytolytic activity of dNKs were impaired by DSC media. Furthermore, the addition of DSC media induced an increase in Th2 cytokine production (IL-4, IL-13, and IL-10) with a concomitant decrease in Th1 cytokine expression (TNF-alpha) of dNKs. However, IFN-gamma, another member of the Th1 cytokine family that is thought to be necessary during early gestation increased after IL-33 stimulation. DSC media sharply inhibited the expression of major activating receptors (NKp30, NKG2D) while up-regulating the levels of inhibitory receptor (KIR2DL1) on dNKs. The biological effect of DSC media on dNKs was abrogated by the administration of sST2. Moreover, Western blot analysis suggested that the NF-kappa B pathway was involved in the IL-33-induced changes in the phenotype and function of dNKs, which was further confirmed by pharmacological inhibition with the NF-kappa B inhibitor BAY 11-7082. Our results suggest that the crosstalk between DSCs and dNKs might play a crucial role in maintaining successful pregnancy. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:蜕膜基质细胞(DSC)是蜕膜组织的重要组成部分,在这些组织中,蜕膜细胞与免疫细胞严格相邻。尽管先前的研究表明,DSC在怀孕期间参与了免疫细胞的调节,但尚未完全阐明DSC与蜕膜NK细胞(dNK)之间的串扰。这项研究的目的是确定DSC衍生的IL-33对dNK功能的影响并探讨其潜在机制。流式细胞仪显示,与外周NK(pNK)相比,dNK上ST2表达显着增加。随后的研究发现,DSC培养基会损害穿孔素的产生,颗粒酶A的产生以及dNK的溶细胞活性。此外,添加DSC培养基诱导增加Th2细胞因子的产生(IL-4,IL-13和IL-10),同时降低dNK的Th1细胞因子表达(TNF-α)。然而,IFN-γ是Th1细胞因子家族的另一个成员,被认为在早期妊娠期间是必需的,在IL-33刺激后,IFN-γ升高。 DSC介质可显着抑制主要激活受体(NKp30,NKG2D)的表达,同时上调dNK上的抑制性受体(KIR2DL1)的水平。 sST2的使用可以消除DSC培养基对dNK的生物学作用。此外,蛋白质印迹分析表明,NF-κB通路参与了IL-33诱导的dNKs表型和功能的变化,这一点进一步被NF-κB抑制剂BAY 11-7082的药理抑制所证实。我们的结果表明,DSC与dNK之间的串扰可能在维持成功妊娠中起关键作用。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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