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过量的CpG 1668刺激会触发cDC产生IL-10,而IL-10会抑制pDC的IFN-α反应。

Excessive CpG 1668 stimulation triggers IL-10 production by cDC that inhibits IFN-alpha responses by pDC.

作者信息

Waibler Zoe, Anzaghe Martina, Konur Abdo, Akira Shizuo, Müller Werner, Kalinke Ulrich

机构信息

Division of Immunology, Paul-Ehrlich-Institut, Langen, Germany.

出版信息

Eur J Immunol. 2008 Nov;38(11):3127-37. doi: 10.1002/eji.200838184.

DOI:10.1002/eji.200838184
PMID:18991289
Abstract

Upon stimulation with a wide range of concentrations of CpG oligodeoxynucleotide 2216 (CpG 2216), plasmacytoid DC are induced to produce type I IFN (IFN-alpha/beta). In contrast, CpG 1668 shows a bell-shaped dose-response correlation, i.e. only intermediate but not high doses of CpG 1668 induce IFN-alpha/beta. Interestingly, high-dose CpG 1668 completely inhibited IFN-alpha responses induced by CpG 2216. Experiments using supernatant of high-dose CpG-1668-treated cells indicated that secreted inhibitor(s) mediated the IFN-alpha shut-off. Among modulating cytokines, IL-10 turned out to be one important negative regulator. In line with this, supernatants of IL-10-deficient DC cultures stimulated with high-dose CpG 1668 did not inhibit IFN-alpha production. Interestingly, high-dose CpG 1668 also inhibited IFN-alpha responses induced by the DNA-encoded mouse cytomegalovirus, whereas IFN-alpha responses induced by negative-strand RNA-encoded vesicular stomatitis virus were only marginally affected. Experiments with DC cultures devoid of TLR9 indicated that TLR9 was critically required to mediate stimulatory and modulatory signals by low and high concentrations of CpG 1668, respectively. Analysis of purified DC subsets showed that conventional DC were the main IL-10 producers, whereas plasmacytoid DC hardly produced any IL-10.

摘要

用多种浓度的CpG寡脱氧核苷酸2216(CpG 2216)刺激时,浆细胞样树突状细胞(pDC)被诱导产生I型干扰素(IFN-α/β)。相比之下,CpG 1668呈现钟形剂量反应相关性,即只有中等剂量而非高剂量的CpG 1668能诱导IFN-α/β。有趣的是,高剂量的CpG 1668完全抑制了CpG 2216诱导的IFN-α反应。使用高剂量CpG-1668处理细胞的上清液进行的实验表明,分泌的抑制剂介导了IFN-α的关闭。在调节性细胞因子中,IL-10被证明是一种重要的负调节因子。与此一致的是,用高剂量CpG 1668刺激的IL-10缺陷型树突状细胞培养上清液并未抑制IFN-α的产生。有趣的是,高剂量的CpG 1668也抑制了由DNA编码的小鼠巨细胞病毒诱导的IFN-α反应,而由负链RNA编码的水疱性口炎病毒诱导的IFN-α反应仅受到轻微影响。对缺乏TLR9的树突状细胞培养物进行的实验表明,TLR9分别是低浓度和高浓度CpG 1668介导刺激信号和调节信号的关键因素。对纯化的树突状细胞亚群的分析表明,传统树突状细胞是主要的IL-10产生者,而浆细胞样树突状细胞几乎不产生任何IL-10。

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