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孕期应激对雄性仔鼠皮质边缘多巴胺能系统发育的年龄依赖性影响。

Age-dependent effects of prenatal stress on the corticolimbic dopaminergic system development in the rat male offspring.

机构信息

Instituto de Química y Fisicoquímica Biologicas, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Buenos Aires, Argentina.

出版信息

Neurochem Res. 2013 Nov;38(11):2323-35. doi: 10.1007/s11064-013-1143-8. Epub 2013 Sep 8.

Abstract

We have previously demonstrated that prenatal stress (PS) exerts an impairment of midbrain dopaminergic (DA) system metabolism especially after puberty, suggesting a particular sensitivity of DA development to variations in gonadal hormonal peaks. Furthermore we demonstrated that PS alters the long term androgens profile of the rat male offspring from prepubertal to adult stages. In this work we evaluated the sexual hormones activational effects on the DA system by analysing PS effects on the dopaminergic D2-like (D2R) and on the gonadal hormones receptor levels on cortical and hippocampal areas of prepubertal and adult male offspring. We further evaluated the dendritic arborization in the same areas by quantifying MAP2 immunoexpresion. Our results show that PS affected oestrogen receptor alpha (ERα) expression: mRNA er1s and ERα protein levels were decreased on prefrontal cortex and hippocampus of adult offspring. Moreover, PS reduced D2R protein levels in hippocampus of prepubertal rats. Morphological studies revealed that prepubertal PS rats presented decreased MAP2 immunoexpression in both areas suggesting that PS reduces the number of dendritic arborizations. Our findings suggest that PS exerts long-term effects on the DA system by altering the normal connectivity in the areas, and by modulating the expression of D2R and ERα in an age-related pattern. Since the developing forebrain DA system was shown to be influenced by androgen exposure, and PS was shown to disrupt perinatal testosterone surges, our results suggest that prenatal insults might be affecting the organizational role of androgens and differentially modulating their activational role on the DA development.

摘要

我们之前的研究表明,产前应激(PS)会损害中脑多巴胺能(DA)系统的代谢,尤其是在青春期之后,这表明 DA 发育对性腺激素峰的变化特别敏感。此外,我们还证明 PS 会改变雄性幼鼠从青春期前到成年期的长期雄激素谱。在这项工作中,我们通过分析 PS 对多巴胺能 D2 样(D2R)受体和皮质和海马区青春期前和成年雄性幼鼠的性腺激素受体水平的影响,评估了性激素对 DA 系统的激活作用。我们还通过量化 MAP2 免疫表达来评估相同区域的树突分支。我们的研究结果表明,PS 会影响雌激素受体 alpha(ERα)的表达:mRNA er1s 和 ERα 蛋白水平在前额皮质和海马体的成年幼鼠中降低。此外,PS 降低了青春期前大鼠海马体中的 D2R 蛋白水平。形态学研究表明,青春期前 PS 大鼠在两个区域的 MAP2 免疫表达减少,这表明 PS 减少了树突分支的数量。我们的发现表明,PS 通过改变区域内的正常连接,以及通过调节 D2R 和 ERα 的表达模式,对 DA 系统产生长期影响。由于发育中的前脑 DA 系统被证明受到雄激素暴露的影响,并且 PS 被证明会破坏围产期睾酮激增,我们的结果表明,产前损伤可能会影响雄激素的组织作用,并对其在 DA 发育中的激活作用进行差异调节。

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