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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Expansion of Bone Marrow IFN-{alpha}-Producing Dendritic Cells in New Zealand Black (NZB) Mice: High Level Expression of TLR9 and Secretion of IFN-{alpha} in NZB Bone Marrow.
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Expansion of Bone Marrow IFN-{alpha}-Producing Dendritic Cells in New Zealand Black (NZB) Mice: High Level Expression of TLR9 and Secretion of IFN-{alpha} in NZB Bone Marrow.

机译:新西兰黑(NZB)小鼠中产生骨髓IFN-α的树突状细胞的扩增:NZB骨髓中TLR9的高水平表达和IFN-α的分泌。

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Patients with systemic lupus erythematosus have elevated IFN-alpha production. Furthermore, sera IFN-alpha levels correlate with disease activity. We have focused our attention on whether this phenotype is also seen in the New Zealand Black (NZB) mice and simultaneously addressed the underlying mechanisms. Specifically, we analyzed: 1) levels of sera IFN-alpha after type A CpG ODN 2216 injection in autoimmunity-prone NZB and control mice, and 2) levels of IFN-alpha synthesized by IFN-alpha-producing dendritic cells (IPDCs) using highly enriched populations of CD11c(+)B220(+) IPDCs derived from NZB and control mice; IPDCs are divided into two subpopulations (CD4(+)CD11c(+)B220(+) and CD4(-)CD11c(+)B220(+)). Our data demonstrate that NZB mice produced higher levels of sera IFN-alpha after type A CpG ODN 2216 injection when compared with control mice (p < 0.01). In addition, the cell numbers, frequency, and TLR9 mRNA levels of CD4(+) and CD4(-) IPDC were markedly increased in the bone marrow (BM) of NZB mice. Upon in vitro stimulation with TLR9 ligand-CpG ODN 2216, higher levels of IFN-alpha were synthesized by IPDCs from the BM of NZB. The major contributor of IFN-alpha was the CD4(-)CD11c(+)B220(+) IPDC subpopulation. Furthermore, NZB BM IPDCs manifest impaired expression of homing chemokine CCR7 and CD62L, and IL-12 production. These data on the functional characteristics of the IPDC lineages explain in part the mechanism of hyper-IFN-alpha production and help clarify the mechanism for the expansion of NZB BM IPDCs.
机译:系统性红斑狼疮患者的IFN-α产生升高。此外,血清IFN-α水平与疾病活动相关。我们将注意力集中在这种表型是否也出现在新西兰黑(NZB)小鼠中,并同时解决了潜在的机制。具体来说,我们分析了:1)在易发自身免疫力的NZB和对照小鼠中注射A型CpG ODN 2216后的血清IFN-α水平,以及2)使用产生IFN-α的树突状细胞(IPDC)合成的IFN-α的水平来自NZB和对照小鼠的CD11c(+)B220(+)IPDC的高富集种群; IPDC分为两个亚群(CD4(+)CD11c(+)B220(+)和CD4(-)CD11c(+)B220(+))。我们的数据表明,与对照组小鼠相比,NZB小鼠在A型CpG ODN 2216注射后产生更高水平的血清IFN-α(p <0.01)。此外,NZB小鼠的骨髓(BM)中CD4(+)和CD4(-)IPDC的细胞数量,频率和TLR9 mRNA水平显着增加。在体外用TLR9配体-CpG ODN 2216刺激后,IPDC从NZB的BM合成了更高水平的IFN-α。 IFN-α的主要贡献者是CD4(-)CD11c(+)B220(+)IPDC亚群。此外,NZB BM IPDCs归巢趋化因子CCR7和CD62L的表达以及IL-12的产生受损。有关IPDC谱系功能特性的这些数据部分解释了高干扰素-α产生的机制,并有助于阐明NZB BM IPDCs扩展的机制。

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