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首页> 外文期刊>The journal of immunology >Ligation of Notch Receptors in Human Conventional and Plasmacytoid Dendritic Cells Differentially Regulates Cytokine and Chemokine Secretion and Modulates Th Cell Polarization
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Ligation of Notch Receptors in Human Conventional and Plasmacytoid Dendritic Cells Differentially Regulates Cytokine and Chemokine Secretion and Modulates Th Cell Polarization

机译:人的常规和浆细胞样树突状细胞中的Notch受体的连接差异调节细胞因子和趋化因子的分泌,并调节Th细胞极化。

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Notch signaling is involved in multiple cellular processes. Recent data also support the prominent role of Notch signaling in the regulation of the immune response. In this study, we analyzed the expression and function of Notch receptors and ligands on both human blood conventional dendritic cells (cDCs) and plasmacytoid DCs (pDCs). The expression and modulation upon TLR activation of Notch molecules partially differed between cDCs and pDCs, but functional involvement of the Notch pathway in both cell types was clearly revealed by specific inhibition using DAPT. Beyond the induction of Notch target genes and modulation of maturation markers, Notch pathway was also involved in a differential secretion of some specific cytokines/chemokines by DC subsets. Whereas Notch ligation induced IL-10 and CCL19 secretion in cDCs, Notch inhibition resulted in a diminished production of these proteins. With regard to pDCs, Notch activation induced TNF-α whereas Notch inhibition significantly abrogated the secretion of CCL19, CXCL9, CXCL10, and TNF-α. Additionally, Notch modulation of DC subsets differentially affected Th polarization of allostimulated T cells. Our results suggest that the Notch pathway may function as an additional mechanism controlling human DC responses, with differential activity on cDCs and pDCs. This control mechanism may ultimately contribute to define the local milieu promoted by these cells under the particular conditions of the immune response.
机译:陷波信号传导涉及多个细胞过程。最近的数据也支持Notch信号传导在免疫应答调节中的重要作用。在这项研究中,我们分析了Notch受体和配体在人类血液常规树突状细胞(cDCs)和浆细胞样DC(pDCs)中的表达和功能。在cDC和pDC之间,Notch分子的TLR激活后的表达和调节部分不同,但是通过使用DAPT进行特异性抑制,Notch通路在两种细胞类型中的功能参与都得到了明确的揭示。除了诱导Notch靶基因和调节成熟标记外,Notch途径还涉及DC亚群分泌某些特定细胞因子/趋化因子的差异。 Notch连接可诱导cDC中IL-10和CCL19的分泌,而Notch抑制则导致这些蛋白质的产量减少。关于pDC,Notch激活诱导了TNF-α,而Notch抑制则显着消除了CCL19,CXCL9,CXCL10和TNF-α的分泌。此外,DC子集的陷波调制差异影响同化T细胞的Th极化。我们的结果表明,Notch途径可能是控制人类DC反应的另一机制,在cDC和pDC上具有不同的活性。在特定的免疫反应条件下,这种控制机制可能最终有助于确定这些细胞促进的局部环境。

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