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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Neonatal lymph node stromal cells drive myelodendritic lineage cells into a distinct population of CX3CR1 +CD11b +F4/80 + regulatory macrophages in mice
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Neonatal lymph node stromal cells drive myelodendritic lineage cells into a distinct population of CX3CR1 +CD11b +F4/80 + regulatory macrophages in mice

机译:新生儿淋巴结间质细胞将骨髓树突状细胞驱动到小鼠的CX3CR1 + CD11b + F4 / 80 +调节性巨噬细胞的不同种群中

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摘要

Beyond providing a scaffold for immune cells, recent studies indicate that lymph node stromal cells provide potent regulatory capacities that affect the quality of adaptive immune responses. In this study, we provide evidence that neonatal lymph node stromal cells (nnLNSCs) consistently promote the differentiation of macrophage dendritic cell progenitors as well as mature and immature dendritic cells into a distinct population of CX3CR1 + CD11b +F4/80 + regulatory macrophages (regMΦ). These cells possess remarkably low levels of T cell costimulatory molecules as well as MHC class II molecules. regM'h do not interfere with early T-cell activation but, via nitric oxide secretion, efficiently suppress T-cell proliferation. Furthermore, CD4 + T cells proliferating in the presence of regMΦ gain immunosuppressive capacity and MΦ isolated from day 3 nnLNs are T-cell immunosuppressive. Adoptive transfer of regMΦ induces a profound antigen-specific immune suppression in vivo. Together our data show that nnLNSCs skew the differentiation of dendritic cells and their progenitors toward regMΦ, thus revealing a novel mechanism for local immune regulation.
机译:除了为免疫细胞提供支架外,最近的研究表明,淋巴结基质细胞可提供有效的调节能力,从而影响适应性免疫反应的质量。在这项研究中,我们提供了证据,即新生儿淋巴结基质细胞(nnLNSCs)持续促进巨噬细胞树突状细胞祖细胞以及成熟和未成熟树突状细胞分化为CX3CR1 + CD11b + F4 / 80 +调节性巨噬细胞(regMΦ)的独特群体)。这些细胞具有极低水平的T细胞共刺激分子以及II类MHC分子。 regM'h不会干扰T细胞的早期活化,而是通过一氧化氮的分泌有效地抑制T细胞的增殖。此外,在regMΦ存在下增殖的CD4 + T细胞具有免疫抑制能力,而从第3天nnLNs分离出的MΦ具有T细胞免疫抑制作用。 regMΦ的过继转移在体内引起了深刻的抗原特异性免疫抑制。我们的数据一起表明nnLNSCs使树突状细胞及其祖细胞的分化偏向regMΦ,从而揭示了局部免疫调节的新机制。

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