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首页> 外文期刊>Journal of biomedicine & biotechnology >Upregulated Expression of Cytotoxicity-Related Genes in IFN-y Knockout Mice with Schistosomajaponicum Infection
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Upregulated Expression of Cytotoxicity-Related Genes in IFN-y Knockout Mice with Schistosomajaponicum Infection

机译:日本血吸虫感染的IFN-γ基因敲除小鼠细胞毒性相关基因表达上调

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It is well accepted that IFN-y is important to the development of acquired resistance against marine schistosomiasis. However, the in vivo role of this immunoregulatory cytokine in helminth infection needs to be further investigated. In this study, parasite burden and host immune response were observed in IFN-y knockout mice (IFNg KO) infected with Schistosoma japonicum for 6 weeks. The results suggested that deficiency in IFN-y led to decreased egg burden in mice, with low schistosome-specific IgG antibody response and enhanced activation of T cells during acute infection. Microarray and qRT-PCR data analyses showed significant upregulation of some cytotoxicity-related genes, including those from the granzyme family, tumor necrosis factor, Fas Ligand, and chemokines, in the spleen cells of IFNg KO mice. Furthermore, CD8~+ cells instead of NK cells of IFNg KO mice exhibited increased transcription of cytotoxic genes compared with WT mice. Additionally, Schistosoma japonicum-specific egg antigen immunization also could activate CD8~+ T cells to upregulate the expression of cytotoxic genes in IFNg KO mice. Our data suggest that IFN-y is not always a positive regulator of immune responses. In certain situations, the disruption of IFN-y signaling may up-regulate the cytotoxic T-cell-mediated immune responses to the parasite.
机译:众所周知,IFN-γ对于获得性抗海洋血吸虫病的抗性的发展很重要。但是,这种免疫调节细胞因子在蠕虫感染中的体内作用需要进一步研究。在这项研究中,在被日本血吸虫感染6周的IFN-y基因敲除小鼠(IFNg KO)中观察到了寄生虫负担和宿主免疫反应。结果表明,IFN-γ的缺乏导致小鼠卵负荷减少,血吸虫特异性IgG抗体应答低,急性感染期间T细胞活化增强。芯片和qRT-PCR数据分析显示,IFNg KO小鼠脾细胞中一些与细胞毒性相关的基因显着上调,包括来自颗粒酶家族,肿瘤坏死因子,Fas配体和趋化因子的基因。此外,与WT小鼠相比,IFNg KO小鼠的CD8 +细胞而非NK细胞表现出增加的细胞毒性基因转录。此外,日本血吸虫特异性卵抗原免疫还可以激活CD8〜+ T细胞,从而上调IFNg KO小鼠的细胞毒性基因的表达。我们的数据表明,IFN-γ并不总是免疫应答的正调节剂。在某些情况下,IFN-γ信号转导的破坏可能会上调细胞毒T细胞介导的对寄生虫的免疫反应。

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