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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Lymphoid precursors are directed to produce dendritic cells as a result of TLR9 ligation during herpes infection.
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Lymphoid precursors are directed to produce dendritic cells as a result of TLR9 ligation during herpes infection.

机译:由于疱疹感染期间TLR9连接,淋巴样前体直接产生树突状细胞。

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Hematopoietic stem and progenitor cells were previously found to express Toll-like receptors (TLRs), suggesting that bacterial/viral products may influence blood cell formation. We now show that common lymphoid progenitors (CLPs) from mice with active HSV-1 infection are biased to dendritic cell (DC) differentiation, and the phenomenon is largely TLR9 dependent. Similarly, CLPs from mice treated with the TLR9 ligand CpG ODN had little ability to generate CD19+ B lineage cells and had augmented competence to generate DCs. TNFalpha mediates the depletion of late-stage lymphoid progenitors from bone marrow in many inflammatory conditions, but redirection of lymphopoiesis occurred in TNFalpha-/- mice treated with CpG ODN. Increased numbers of DCs with a lymphoid past were identified in Ig gene recombination substrate reporter mice treated with CpG ODN. TLR9 is highly expressed on lymphoid progenitors, and culture studies revealed that those receptors, rather than inflammatory cytokines, accounted for the production of several types of functional DCs. Common myeloid progenitors are normally a good source of DCs, but this potential was reduced by TLR9 ligation. Thus, alternate differentiation pathways may be used to produce innate effector cells in health and disease.
机译:先前发现造血干细胞和祖细胞表达Toll样受体(TLR),这表明细菌/病毒产物可能会影响血细胞的形成。现在,我们显示来自具有活跃HSV-1感染的小鼠的常见淋巴祖细胞(CLP)偏向树突状细胞(DC)分化,并且这种现象在很大程度上取决于TLR9。同样,用TLR9配体CpG ODN处理的小鼠的CLP几乎没有生成CD19 + B谱系细胞的能力,并且具有增强的生成DC的能力。在许多炎症条件下,TNFalpha介导了骨髓中晚期淋巴样祖细胞的耗竭,但是在用CpG ODN处理的TNFalpha-/-小鼠中发生了淋巴细胞生成的重定向。在用CpG ODN处理的Ig基因重组底物报道基因小鼠中鉴定出具有淋巴样转移的DC数量增加。 TLR9在淋巴样祖细胞中高度表达,并且培养研究表明,这些受体而不是炎性细胞因子是几种功能性DC产生的原因。常见的骨髓祖细胞通常是DC的良好来源,但是通过TLR9的连接,这种潜力被降低了。因此,替代的分化途径可以用于在健康和疾病中产生先天的效应细胞。

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