首页> 外文期刊>Molecular human reproduction. >Evidence for the expression of interleukin (IL)-18, IL-18 receptor and IL-18 binding protein in the human endometrium.
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Evidence for the expression of interleukin (IL)-18, IL-18 receptor and IL-18 binding protein in the human endometrium.

机译:在人子宫内膜中表达白介素(IL)-18,IL-18受体和IL-18结合蛋白的证据。

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摘要

To see whether the interleukin (IL)-18 system is operative in the endometrium, we examined the expression of IL-18, IL-18 receptor (IL-18R) and IL-18 binding protein (IL-18BP), the substance known to neutralize IL-18 activity, in this tissue. Reverse transcription-polymerase chain reaction analyses showed that IL-18, IL-18R and IL-18BP mRNA were constitutively expressed without significant fluctuation throughout the menstrual cycle. When epithelial cells and stromal cells were cultured separately, the expression levels of IL-18 mRNA in epithelial cells were about 18-fold higher compared to those in stromal cells. Furthermore, the IL-18 precursor protein was detected by Western blot analysis in cultured epithelial cells but not in stromal cells. Recombinant human IL-18 stimulated the secretion of interferon (IFN)-gamma by resident bone marrow-derived cells in the endometrium. On the other hand, IFN-gamma up-regulated the IL-18BP expression both in cultured epithelial cells and stromal cells. Thus, we have presented evidence for the presence of the IL-18 system in the human endometrium. In light of its immunomodulatory roles in a variety of tissues, this system may afford protection against pathogenic micro-organisms and provide a regulatory mechanism for controlled trophoblast invasion by modulating a local cytokine network.
机译:为了了解白细胞介素(IL)-18系统是否在子宫内膜中起作用,我们检查了IL-18,IL-18受体(IL-18R)和IL-18结合蛋白(IL-18BP)(已知物质)的表达中和该组织中的IL-18活性。逆转录-聚合酶链反应分析表明,IL-18,IL-18R和IL-18BP mRNA组成型表达,在整个月经周期中无明显波动。当分别培养上皮细胞和基质细胞时,IL-18 mRNA在上皮细胞中的表达水平比在基质细胞中高约18倍。此外,通过Western印迹分析在培养的上皮细胞中而不是在基质细胞中检测到IL-18前体蛋白。重组人IL-18刺激子宫内膜中的骨髓来源细胞分泌干扰素(IFN)-γ。另一方面,IFN-γ在培养的上皮细胞和基质细胞中均上调IL-18BP的表达。因此,我们已经提供了人类子宫内膜中IL-18系统存在的证据。鉴于其在多种组织中的免疫调节作用,该系统可提供针对病原性微生物的保护,并通过调节局部细胞因子网络为控制滋养细胞入侵提供调节机制。

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