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Gender differences in the long-term effects of chronic prenatal stress on the HPA axis and hypothalamic structure in rats\ud

机译:慢性产前应激对大鼠HPA轴和下丘脑结构的长期影响中的性别差异\ ud

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摘要

Stress during pregnancy can impair biological and behavioral responses in the adult offspring and some of these effects are associated with structural changes in specific brain regions. Furthermore, these outcomes can vary according to strain, gender, and type and duration of the maternal stress. Indeed, early stress can induce sexually dimorphic long-term effects on diverse endocrine axes, including subsequent responses to stress. However, whether hypothalamic structural modifications are associated with these endocrine disruptions has not been reported. Thus, we examined the gender differences in the long-term effects of prenatal and adult immobilization stress on the hypothalamic–pituitary–adrenocortical (HPA) axis and the associated changes in hypothalamic structural proteins. Pregnant Wistar rats were subjected to immobilization stress three times daily (45 min each) during the last week of gestation. One half of the offspring were subjected to the same regimen of stress on 10 consecutive days starting at postnatal day (PND) 90. At sacrifice (PND 180), serum corticosterone levels were significantly higher in females compared to males and increased significantly in females subjected to both stresses with no change in males. Prenatal stress increased pituitary ACTH content in males, with no effect in females. Hypothalamic CRH mRNA levels were significantly increased by prenatal stress in females, but decreased in male rats. In females neither stress affected hypothalamic cell death, as determined by cytoplasmic histone-associated DNA fragment levels or proliferation, determined by proliferating cell nuclear antigen levels (PCNA); however, in males there was a significant decrease in cell death in response to prenatal stress and a decrease in PCNA levels with both prenatal and adult stress. In all groups BrdU immunoreactivity colocalized in glial fibrillary acidic protein (GFAP) positive cells, with few BrdU/NeuN labelled cells found. Furthermore, in males the astrocyte marker S100β increased with prenatal stress and decreased with adult stress, suggesting affectation of astrocytes. Synapsin-1 levels were increased by adult stress in females and by prenatal stress in males, while, PSD95 levels were increased in females and decreased in males by both prenatal and adult stress. In conclusion, hypothalamic structural rearrangement appears to be involved in the long-term endocrine outcomes observed after both chronic prenatal and adult stresses. Furthermore, many of these changes are not only different between males and females, but opposite, which could underlie the gender differences in the long-term sequale of chronic stress, including subsequent responses to stress.\ud\ud
机译:怀孕期间的压力会损害成年后代的生物学和行为反应,其中一些影响与特定大脑区域的结构变化有关。此外,这些结果可能会因压力,性别,产妇压力的类型和持续时间而异。的确,早期压力会在各种内分泌轴上引起性双态性长期影响,包括对压力的后续反应。但是,尚未报道下丘脑结构改变是否与这些内分泌干扰有关。因此,我们研究了在产前和成人固定应激对下丘脑-垂体-肾上腺皮质(HPA)轴的长期影响中的性别差异以及下丘脑结构蛋白的相关变化。在妊娠的最后一周,每天对怀孕的Wistar大鼠进行3次固定压力(每次45分钟)。从出生后第90天开始,连续10天对一半后代施加相同的压力。在处死(PND 180)时,雌性的血清皮质酮水平明显高于雄性,雌性的血清皮质酮水平明显升高两种压力都没有改变。产前压力增加了男性的垂体促肾上腺皮质激素含量,而对女性没有影响。下丘脑CRH mRNA水平在雌性产前应激中显着增加,但在雄性大鼠中降低。在雌性中,压力均不会影响下丘脑细胞的死亡(由细胞质组蛋白相关的DNA片段水平确定或由增殖细胞核抗原水平(PCNA)确定)。但是,在男性中,由于产前压力而导致的细胞死亡显着减少,而产前和成年压力都使PCNA水平降低。在所有组中,BrdU免疫反应性共定位于神经胶质纤维酸性蛋白(GFAP)阳性细胞中,很少发现BrdU / NeuN标记的细胞。此外,在男性中,星形胶质细胞标记物S100β随着产前压力的增加而增加,而随着成年压力的降低,提示星形胶质细胞受到影响。女性的成年应激和男性的产前应激会升高Synapsin-1的水平,而女性的PSD95水平会因产前和成年应激而升高,而男性的PSD95则降低。总之,下丘脑结构重排似乎与慢性产前和成人应激后观察到的长期内分泌结果有关。此外,这些变化中的许多变化不仅在男性和女性之间是不同的,而且是相反的,这可能是长期应激长期序列中的性别差异的基础,包括随后对应激的反应。

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