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The Balance between Conventional DCs and Plasmacytoid DCs Is Pivotal for Immunological Tolerance during Pregnancy in the Mouse

机译:常规DC和浆细胞样DC之间的平衡是小鼠怀孕期间免疫耐受的关键。

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摘要

Dendritic cells (DCs), which can shape their functions depending on the microenvironment, are crucial for the delicate balance of immunity and tolerance during pregnancy. However, the mechanism underlying the microenvironment-educated plasticity of DC differentiation during pregnancy remains largely unclear. Here, we found that the differentiation of conventional DCs (cDCs) and plasmacytoid DCs (pDCs) is regulated in a tissue-specific manner during pregnancy. The ratio of cDCs and pDCs remained constant in the spleen. However, the ratio changed in the para-aortic lymph nodes (LNs), where cDC percentages were significantly reduced concurrent with an increase in pDCs from E8.5 to E16.5. Moreover, the expansion of pDCs and T regulatory (Treg) cells was correlated in the para-aortic LNs, and pDCs had more potential to induce regulatory T cells (Tregs) compared with cDCs (independent of IDO expression). Notably, the balance between cDCs and pDCs is disrupted in IFN-γ-induced abnormal pregnancy, accompanied by lower Treg percentages in the para-aortic LNs and decidua. To further identify the underlying mechanism, we found that elevated IFN-γ can increase the levels of GM-CSF to alter the differentiation of pDCs into cDCs in vivo. Therefore, we provide a novel regulatory mechanism underlying pregnancy-related immune tolerance that involves the balance of DC subsets, which may offer a new target for the prevention of human spontaneous abortion.
机译:树突状细胞(DC)可以根据微环境改变其功能,对于怀孕期间免疫力和耐受力的微妙平衡至关重要。但是,在孕期微环境诱导的DC分化可塑性的潜在机制仍不清楚。在这里,我们发现,在怀孕期间,常规DC(cDC)和浆细胞样DC(pDC)的分化受到组织特异性调节。脾脏中cDC和pDC的比例保持恒定。但是,该比例在主动脉旁淋巴结(LN)中发生了变化,其中cDC百分比显着降低,而pDC从E8.5升高到E16.5。此外,pDC和T调节(Treg)细胞在主动脉旁淋巴结中的扩增相关,并且pDC与cDC相比具有更多的潜力来诱导调节T细胞(Treg)(独立于IDO表达)。值得注意的是,在干扰素-γ诱导的异常妊娠中,cDC和pDC之间的平衡被破坏,伴随着主动脉旁LN和蜕膜中的Treg百分比降低。为了进一步确定潜在的机制,我们发现升高的IFN-γ可以增加GM-CSF的水平,从而改变体内pDC向cDC的分化。因此,我们提供了一种与妊娠相关的免疫耐受相关的新型调节机制,该机制涉及DC亚群的平衡,这可能为预防人类自然流产提供了新的靶点。

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