母体免疫激活对子代神经免疫功能的区域特异性影响。

Heping Zhou
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引用次数: 5

摘要

越来越多的证据表明,母体免疫激活对后代的免疫能力有重大影响。本研究旨在描述母体免疫激活对后代神经免疫功能的区域特异性影响。在妊娠第18天给予生理盐水或脂多糖(LPS)处理的母鼠,在出生后第21天给予生理盐水或脂多糖刺激,分析后代不同脑区各种炎症基因的mRNA表达。经盐处理的幼鼠所生的后代表现出典型的神经免疫反应,在LPS刺激后,四个大脑区域的细胞因子和趋化因子水平升高。相比之下,LPS处理的幼鼠与盐水处理的幼鼠相比,在LPS刺激后,其前额皮质细胞因子和趋化因子的mRNA诱导明显减少,而脑干则没有。此外,与盐处理过的幼鼠相比,lps诱导的I-κBζ在前额皮质的mRNA表达明显减弱。这些结果提示,母体LPS可能对后代大脑不同区域的神经免疫功能有不同的影响,并突出了母体环境在后代神经免疫功能发育中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Region Specific Effects of Maternal Immune Activation on Offspring Neuroimmune Function.

Region Specific Effects of Maternal Immune Activation on Offspring Neuroimmune Function.

Region Specific Effects of Maternal Immune Activation on Offspring Neuroimmune Function.

Region Specific Effects of Maternal Immune Activation on Offspring Neuroimmune Function.

Growing evidence suggests that maternal immune activation has a significant impact on the immuno-competence of the offspring. The present study aimed to characterize region-specific effects of maternal immune activation on the offspring's neuroimmune function. The offspring born to dams treated with saline or lipopolysaccharide (LPS) at gestational day 18 was stimulated with saline or LPS at postnatal day 21, and the mRNA expression of various inflammatory genes in different brain regions of the offspring was analyzed. The offspring born to saline-treated dams exhibited a typical neuroimmune response with elevated levels of cytokines and chemokines following LPS stimulation in all four brain regions examined. In contrast, the offspring born to LPS-treated dams exhibited significantly reduced mRNA induction of cytokines and chemokines following LPS stimulation in the prefrontal cortex but not in the brainstem when compared with pups born to saline-treated dams. Furthermore, the mRNA expression of LPS-induced I-κBζ was significantly attenuated in the prefrontal cortex when compared with pups born to saline-treated dams. These results suggest that maternal LPS may have differential effects on the neuroimmune function in different regions of the offspring brain, and highlight the importance of maternal milieu in the development of neuroimmune function in the offspring.

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