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Functional analysis of the role of interferon gamma through the characterisation of conditional interferon gamma receptor two mouse mutants

机译:功能分析干扰素γ的作用通过表征条件干扰素γ受体两个小鼠突变体

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摘要

The data presented within this thesis shows the generation and characterisation of a complete-, macrophage/granulocyte- and T cell-specific IFNγR2 deficient mouse mutant. This mutant mouse is a valuable tool in dissecting the mechanism of action of the pleiotrophic cytokine IFNγ.The global mutant mouse was tested in three models in vivo - DSS induced colitis, Trichuris muris infection and EAE. The aim of the DSS-induced colitis model was to test the role of IFNγ in the innate immune system and, despite previous reports demonstrating IFNγ deficient mice are protected from DSS-colitis, our IFNγR2 deficient mice displayed equal or more severe colitis than control mice. We hypothesise that this discrepancy is due to differences in the gut microbiota.The Trichuris muris model was utilised as a method of examining the role of IFNγ in the adaptive immune system. The complete IFNγR2 mutant was resistant to a low dose T. muris infection; however, neither the T cell specific nor the macrophage/granulocyte specific mutant duplicated the resistant phenotype observed in the global knock-out mice. Analysis of a double conditional T cell and macrophage/granulocyte specific IFNγR2 mutant produced inconsistent results. Initial experiments suggested that, in combination, these deficiencies are sufficient to duplicate the resistant phenotype observed in the global mutant mice, but this was not reproducible.The final in vivo model that we used to analyse IFNγR2 mutant mice was EAE. This model was chosen as, for a long time, the mechanism of action and the involvement of IFNγ in EAE has been a matter of uncertainty. These results demonstrated that global IFNγR2 mutant mice demonstrate an atypical phenotype, with no signs of recovery. In contrast, control mice develop classical EAE symptoms with almost complete recovery prior to the termination of the experiment. The IFNγ receptor mutant mouse generated will be of great value to the scientific community as IFNγ has been demonstrated to play a role in multiple diseases and this tool allows the mechanism of action of this cytokine to be unravelled.
机译:本论文中提供的数据显示了完整,巨噬细胞/粒细胞和T细胞特异性IFNγR2缺陷小鼠突变体的产生和表征。该突变小鼠是剖析多营养细胞因子IFNγ作用机理的有价值的工具。在3种体内模型中测试了该全局突变小鼠-DSS诱导的结肠炎,粘液Tri虫感染和EAE。 DSS诱导的结肠炎模型的目的是测试IFNγ在先天免疫系统中的作用,尽管先前的报道表明IFNγ缺陷小鼠受到了DSS结肠炎的保护,但我们的IFNγR2缺陷小鼠表现出与对照小鼠相同或更严重的结肠炎。我们假设这种差异是由于肠道菌群的差异所致。Trichuris muris模型被用作检查IFNγ在适应性免疫系统中的作用的方法。完整的IFNγR2突变体对低剂量的鼠毛衣原体感染有抵抗力。然而,T细胞特异性和巨噬细胞/粒细胞特异性突变体均不能复制在整体基因敲除小鼠中观察到的耐药表型。对双重条件T细胞和巨噬细胞/粒细胞特异性IFNγR2突变体的分析产生不一致的结果。最初的实验表明,这些缺陷足以复制在整体突变小鼠中观察到的耐药表型,但这是不可重现的。我们用来分析IFNγR2突变小鼠的最终体内模型是EAE。选择该模型的原因是,长期以来,其作用机理以及IFNγ在EAE中的参与一直是不确定的问题。这些结果表明,全局IFNγR2突变小鼠表现出非典型表型,没有恢复的迹象。相反,在实验终止之前,对照小鼠出现经典的EAE症状,几乎可以完全恢复。由于已证明IFNγ在多种疾病中起作用,因此所产生的IFNγ受体突变小鼠对科学界具有重要价值,并且该工具可以阐明这种细胞因子的作用机理。

著录项

  • 作者

    Muller Werner; Forman Ruth;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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