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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Mapping the areas sensitive to long-term endotoxin tolerance in the rat brain: a c-fos mRNA study.
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Mapping the areas sensitive to long-term endotoxin tolerance in the rat brain: a c-fos mRNA study.

机译:绘制对大鼠大脑中长期内毒素耐受性敏感的区域的图:一项c-fos mRNA研究。

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We have recently found that a single endotoxin administration to rats reduced the hypothalamic-pituitary-adrenal response to another endotoxin administration 4 weeks later, which may be an example of the well-known phenomenon of endotoxin tolerance. However, the time elapsed between the two doses of endotoxin was long enough to consider the above results as an example of late tolerance, whose mechanisms are poorly characterized. To know if the brain plays a role in this phenomenon and to characterize the putative areas involved, we compared the c-fos mRNA response after a final dose of endotoxin in animals given vehicle or endotoxin 4 weeks before. Endotoxin caused a widespread induction of c-fos mRNA in the brain, similar to that previously reported by other laboratories. Whereas most of the brain areas were not sensitive to the previous experience with endotoxin, a few showed a reduced response in endotoxin-pretreated rats: the parvocellular and magnocellular regions of the paraventricular hypothalamic nucleus, the central amygdala, the lateral division of the bed nucleus and the locus coeruleus. We hypothesize that late tolerance to endotoxin may involve plastic changes in the brain, likely to be located in the central amygdala. The reduced activation of the central amygdala in rats previously treated with endotoxin may, in turn, reduce the activation of other brain areas, including the hypothalamic paraventicular nucleus.
机译:我们最近发现,向大鼠单次内毒素给药可降低4周后对另一种内毒素给药的下丘脑-垂体-肾上腺肾上腺反应,这可能是众所周知的内毒素耐受现象的一个例子。但是,两次内毒素之间的时间已经足够长,足以将上述结果作为后期耐受性的一个例子,其耐受性机制较差。为了了解大脑是否在这种现象中起作用,并表征涉及的推定区域,我们比较了在最终剂量的内毒素给动物施用载体或内毒素的动物在4周前对c-fos mRNA的反应。内毒素引起大脑中c-fos mRNA的广泛诱导,这与其他实验室先前报道的相似。尽管大多数大脑区域对以前使用过的内毒素并不敏感,但少数区域在经内毒素预处理的大鼠中反应减弱:下丘脑旁丘脑核的细小细胞和大细胞区域,中央杏仁核,床核的横向分裂和蓝斑。我们假设对内毒素的晚期耐受可能涉及大脑的塑性变化,可能位于杏仁核的中央。先前接受内毒素治疗的大鼠中中央杏仁核的活化减少,反过来又可以降低其他脑部区域的活化,包括下丘脑室旁核。

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