首页> 美国卫生研究院文献>The Journal of Experimental Medicine >Inducible Nitric Oxide Is Essential for Host Control of Persistent but Not Acute Infection with the Intracellular Pathogen Toxoplasma gondii
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Inducible Nitric Oxide Is Essential for Host Control of Persistent but Not Acute Infection with the Intracellular Pathogen Toxoplasma gondii

机译:诱导型一氧化氮对于持续但非急性感染细胞内病原体弓形虫的宿主控制至关重要

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摘要

The induction by IFN-γ of reactive nitrogen intermediates has been postulated as a major mechanism of host resistance to intracellular pathogens. To formally test this hypothesis in vivo, the course of Toxoplasma gondii infection was assessed in nitric oxide synthase (iNOS)−/− mice. As expected, macrophages from these animals displayed defective microbicidal activity against the parasite in vitro. Nevertheless, in contrast to IFN-γ−/− or IL-12 p40−/− animals, iNOSdeficient mice survived acute infection and controlled parasite growth at the site of inoculation. This early resistance was ablated by neutralization of IFN-γ or IL-12 in vivo and markedly diminished by depletion of neutrophils, demonstrating the existence of previously unappreciated NO independent mechanisms operating against the parasite during early infection. By 3-4 wk post infection, however, iNOS knockout mice did succumb to T. gondii. At that stage parasite expansion and pathology were evident in the central nervous system but not the periphery suggesting that the protective role of nitric oxide against this intracellular infection is tissue specific rather than systemic.
机译:推测IFN-γ对反应性氮中间体的诱导是宿主对细胞内病原体抗性的主要机制。为了在体内正式检验该假设,在一氧化氮合酶(iNOS)-/-小鼠中评估了弓形虫感染的过程。如预期的那样,这些动物的巨噬细胞在体外对寄生虫显示出有害的杀微生物活性。然而,与IFN-γ-/-或IL-12 p40-/-动物相比,iNOS缺乏症小鼠在急性感染中存活并在接种位点控制了寄生虫的生长。体内的IFN-γ或IL-12的中和作用消除了这种早期耐药性,嗜中性粒细胞的消耗显着减弱了这种早期耐药性,这表明在早期感染期间存在针对寄生虫的未认识到的NO独立机制。但是,到感染后3-4周,iNOS剔除小鼠确实死于弓形虫。在那个阶段,中枢神经系统中有明显的寄生虫扩张和病理变化,但在外围却没有,这表明一氧化氮对这种细胞内感染的保护作用是组织特异性而非全身性的。

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