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γ-干扰素在对实验性自身免疫性重症肌无力易感性不同的大鼠品系中的作用。

Role for interferon-gamma in rat strains with different susceptibility to experimental autoimmune myasthenia gravis.

作者信息

Wang H B, Shi F D, Li H, van der Meide P H, Ljunggren H G, Link H

机构信息

Experimental Neurology Unit, Huddinge University Hospital, Stockholm, S-141 86, Sweden.

出版信息

Clin Immunol. 2000 May;95(2):156-62. doi: 10.1006/clim.2000.4850.

Abstract

Experimental autoimmune myasthenia gravis (EAMG) is caused by autoantibodies against the nicotinic acetylcholine receptor (AChR) at the neuromuscular postsynaptic membrane and represents an animal model of myasthenia gravis in human. Recent studies highlighted the roles of TH1 cytokines (IFN-gamma, IL-12), rather than TH2 cytokines (IL-4), in the pathogenesis of EAMG by using homozygous (-/-) knockout mice with an EAMG-susceptible genetic background. To further evaluate a role for IFN-gamma, we injected recombinant rat IFN-gamma (rrIFN-gamma) at the time of immunization with AChR in complete Freund's adjuvant to EAMG-susceptible Lewis rats and EAMG-resistant Wistar Furth (WF) rats. RrIFN-gamma enhanced Lewis rat EAMG. The exacerbated muscular weakness was associated with higher levels of anti-AChR IgG and enhanced TNF-alpha responses. Anti-AChR IgG antibody levels were augmented to a similar extent as in Lewis rats, however, the identical immunization and IFN-gamma injection induced only mild and transient EAMG in WF rats due to the default TH3 phenotype development and inherent low TH1 responses. We conclude that IFN-gamma plays a major role in the pathogenesis of EAMG in the Lewis rat, but fails to break disease resistance in the WF rat.

摘要

实验性自身免疫性重症肌无力(EAMG)是由针对神经肌肉突触后膜烟碱型乙酰胆碱受体(AChR)的自身抗体引起的,是人类重症肌无力的一种动物模型。最近的研究通过使用具有EAMG易感性遗传背景的纯合子(-/-)敲除小鼠,强调了TH1细胞因子(IFN-γ、IL-12)而非TH2细胞因子(IL-4)在EAMG发病机制中的作用。为了进一步评估IFN-γ的作用,我们在对EAMG易感的Lewis大鼠和EAMG抗性的Wistar Furth(WF)大鼠用完全弗氏佐剂免疫AChR时注射重组大鼠IFN-γ(rrIFN-γ)。rrIFN-γ增强了Lewis大鼠的EAMG。肌肉无力加剧与抗AChR IgG水平升高和TNF-α反应增强有关。抗AChR IgG抗体水平升高到与Lewis大鼠相似的程度,然而,相同的免疫和IFN-γ注射在WF大鼠中仅诱导了轻度和短暂的EAMG,这是由于默认的TH3表型发展和固有的低TH1反应。我们得出结论,IFN-γ在Lewis大鼠EAMG的发病机制中起主要作用,但未能打破WF大鼠的抗病性。

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