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Interferon-alpha (IFN-α) enhances cytotoxicity in healthy volunteers and chronic hepatitis C infection mainly by the perforin pathway

机译:干扰素-α(IFN-α)主要通过穿孔素途径增强健康志愿者和慢性丙型肝炎感染的细胞毒性

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摘要

Cell-mediated cytotoxicity is exerted via perforin and Fas ligand (FasL). We have recently shown that IFN-α up-regulates FasL expression in T cells isolated from healthy volunteers and augments activation-induced T cell death. Since the Fas/FasL system is implicated in the pathogenesis of hepatic failure and both molecules have been shown to be up-regulated in hepatitis C virus (HCV) infection, we studied whether cytotoxicity via the FasL system is enhanced by IFN-α and therefore could contribute to hepatic injury. We investigated FasL and perforin expression in peripheral blood mononuclear cells (PBMC) derived from HCV+ donors by Northern analysis and soluble FasL synthesis by ELISA. Natural killer (NK) cell and cytotoxic T lymphocyte (CTL) cytotoxicity was studied by 51Cr-release assays. IFN-α up-regulates FasL mRNA and protein synthesis in mitogen-activated PBMC of HCV+ individuals, as previously found in healthy subjects. Stimulation with IFN-α increases perforin mRNA levels in PBMC. In NK cytotoxicity assays, the enhancement of cytotoxicity by IFN-α is mainly due to the perforin pathway, while the FasL pathway plays only a minor role. In CTL cytotoxicity experiments neither the FasL nor the perforin pathway is further enhanced by IFN-α. Our data suggest that up-regulation of perforin by IFN-α results in elevated cytotoxicity, suggesting that IFN-α might support elimination of virally infected cells via this pathway. In contrast, the major effect of IFN-α on the Fas/FasL system might be the enhanced elimination of activated T cells as a means of finally limiting a T cell response.
机译:通过穿孔素和Fas配体(FasL)发挥细胞介导的细胞毒性作用。我们最近发现,IFN-α上调了从健康志愿者体内分离的T细胞中FasL的表达,并增加了激活诱导的T细胞死亡。由于Fas / FasL系统与肝功能衰竭的发病机制有关,并且已证明这两种分子在丙型肝炎病毒(HCV)感染中均上调,因此我们研究了通过FasL系统的细胞毒性是否被IFN-α增强,因此可能会导致肝损伤。通过Northern分析和ELISA法检测可溶性FasL的合成,研究了HCV + 供体的外周血单个核细胞(PBMC)中FasL和穿孔素的表达。通过 51 Cr释放试验研究了自然杀伤(NK)细胞和细胞毒性T淋巴细胞(CTL)的细胞毒性。 IFN-α上调HCV + 个体的有丝分裂原激活的PBMC中FasL mRNA和蛋白质的合成,这在健康受试者中是发现的。 IFN-α刺激可增加PBMC中穿孔素mRNA的水平。在NK细胞毒性测定中,IFN-α增强细胞毒性主要是由于穿孔素途径,而FasL途径仅起较小作用。在CTL细胞毒性实验中,IFN-α不会进一步增强FasL或穿孔素途径。我们的数据表明,IFN-α对穿孔素的上调导致细胞毒性升高,提示IFN-α可能支持通过该途径消除病毒感染的细胞。相反,IFN-α对Fas / FasL系统的主要作用可能是增强活化的T细胞的消除,作为最终限制T细胞应答的手段。

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