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在铁负荷的BALB/c小鼠中观察到的活性氧依赖性核因子-κB激活是阻止杜氏利什曼原虫子代生长和组织损伤的关键过程吗?

Is the reactive oxygen species-dependent-NF-kappaB activation observed in iron-loaded BALB/c mice a key process preventing growth of Leishmania major progeny and tissue-damage?

作者信息

Bisti Sylvia, Soteriadou Ketty

机构信息

Laboratory of Molecular Parasitology, Hellenic Pasteur Institute, 127 Bas. Sofias Avenue, 115 21 Athens, Greece.

出版信息

Microbes Infect. 2006 May;8(6):1473-82. doi: 10.1016/j.micinf.2006.01.004. Epub 2006 Mar 31.

Abstract

Systemic iron delivery to BALB/c mice, at time points surrounding the inoculation of 1000 Leishmania major metacyclic promastigotes intradermally in the ear results in the complete absence of onset and further development of ear lesion. In these iron-protected mice, the L. major intracellular progeny remains very low in both the ear and the draining lymph node. The iron-induced protective status is associated with a diphenyleneiodonium-sensitive sustained increased oxidative burst. We showed that iron-loaded mice developed no lesions at the site of the primary inoculation and were also resistant to reinoculation at a distant site (intradermal re-inoculation of 1000 metacyclic promastigotes in the contra-lateral ear). Interestingly, in the lymph node cell population recovered from iron-loaded mice at weeks 8 and 12 after the second parasite inoculation, and whatever the protective status studied--primary or resistant to re-inoculation--three potentially related features were observed: (i) NF-kappaB activation, (ii) enhanced TCR-mediated T lymphocyte proliferation, and (iii) high number of IFN-gamma-positive CD4(+)T cells. These results show a putative role of an iron-induced reactive oxygen species-dependent activation of NF-kappaB in the development of protective immunity against L. major.

摘要

在向BALB/c小鼠皮内接种1000个硕大利什曼原虫无鞭毛体前、中和后的各个时间点进行全身铁输送,会导致耳部病变完全不出现且不再进一步发展。在这些受到铁保护的小鼠中,硕大利什曼原虫的细胞内子代在耳部和引流淋巴结中的数量都非常低。铁诱导的保护状态与二苯基碘鎓敏感的持续性氧化爆发增加有关。我们发现,铁负荷小鼠在初次接种部位未出现病变,并且对在远处部位再次接种(在对侧耳皮内再次接种1000个无鞭毛体)也具有抗性。有趣的是,在第二次接种寄生虫后第8周和第12周从铁负荷小鼠中回收的淋巴结细胞群体中,无论研究的是哪种保护状态——初次接种后的保护状态还是对再次接种具有抗性的状态——都观察到三个潜在相关的特征:(i)NF-κB激活,(ii)TCR介导的T淋巴细胞增殖增强,以及(iii)大量IFN-γ阳性CD4(+)T细胞。这些结果表明,铁诱导的依赖活性氧的NF-κB激活在针对硕大利什曼原虫的保护性免疫发展中具有假定作用。

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