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在实验性自身免疫性脑脊髓炎中,抗原呈递细胞的信号转导抑制可减少Th17和Th1反应。

Signal transduction inhibition of APCs diminishes th17 and Th1 responses in experimental autoimmune encephalomyelitis.

作者信息

Skarica Mario, Wang Tianhong, McCadden Erin, Kardian David, Calabresi Peter A, Small Donald, Whartenby Katharine A

机构信息

Department of Oncology, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore MD 21231, USA.

出版信息

J Immunol. 2009 Apr 1;182(7):4192-9. doi: 10.4049/jimmunol.0803631.

Abstract

IL-17- and IFN-gamma-secreting T cells play an important role in autoimmune responses in multiple sclerosis and the model system experimental autoimmune encephalomyelitis (EAE). Dendritic cells (DCs) in the periphery and microglia in the CNS are responsible for cytokine polarization and expansion of this T cell subset. Our results indicate that in vivo administration of a signal transduction inhibitor that targets DCs to mice with EAE led to a decrease in CNS infiltration of pathogenic Ag-specific T cells. Since this approach does not target T cells directly, we assessed the effects on the APCs that are involved in generating the T cell responses. Since in EAE and multiple sclerosis, both microglia and peripheral DCs are likely to contribute to disease, we utilized a bone marrow chimera system to distinguish between these two populations. These studies show that peripheral DCs are the primary target but that microglia are also modestly affected by CEP-701, as numbers and activation states of the cells in the CNS are decreased after therapy. Our results also showed a decrease in secretion of TNF-alpha, IL-6, and IL-23 by DCs as well as a decrease in expression of costimulatory molecules. We further determined that levels of phospho-Stat1, Stat3, Stat5, and NF-kappaB, which are signaling molecules that have been implicated in these pathways, were decreased. Thus, use of this class of signal transduction inhibitors may represent a novel method to treat autoimmunity by dampening the autoreactive polarizing condition driven by DCs.

摘要

分泌白细胞介素-17和干扰素-γ的T细胞在多发性硬化症及模型系统实验性自身免疫性脑脊髓炎(EAE)的自身免疫反应中发挥重要作用。外周的树突状细胞(DCs)和中枢神经系统中的小胶质细胞负责这种T细胞亚群的细胞因子极化和扩增。我们的结果表明,给患有EAE的小鼠体内注射一种靶向DCs的信号转导抑制剂,会导致致病性抗原特异性T细胞向中枢神经系统的浸润减少。由于这种方法不直接靶向T细胞,我们评估了其对参与产生T细胞反应的抗原呈递细胞(APCs)的影响。由于在EAE和多发性硬化症中,小胶质细胞和外周DCs都可能导致疾病,我们利用骨髓嵌合体系统来区分这两种细胞群。这些研究表明,外周DCs是主要靶点,但小胶质细胞也受到CEP-701的适度影响,因为治疗后中枢神经系统中细胞的数量和激活状态会减少。我们的结果还显示,DCs分泌的肿瘤坏死因子-α、白细胞介素-6和白细胞介素-23减少,共刺激分子的表达也减少。我们进一步确定,参与这些信号通路的信号分子磷酸化信号转导及转录激活因子1(Stat1)、信号转导及转录激活因子3(Stat3)、信号转导及转录激活因子5(Stat5)和核因子κB(NF-κB)的水平降低。因此,使用这类信号转导抑制剂可能代表一种通过抑制DCs驱动的自身反应性极化状态来治疗自身免疫性疾病的新方法。

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