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首页> 外文期刊>Psychopharmacology >Involvement of pregnane xenobiotic receptor in mating-induced allopregnanolone formation in the midbrain and hippocampus and brain-derived neurotrophic factor in the hippocampus among female rats
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Involvement of pregnane xenobiotic receptor in mating-induced allopregnanolone formation in the midbrain and hippocampus and brain-derived neurotrophic factor in the hippocampus among female rats

机译:孕激素异生素受体参与雌性大鼠中脑和海马交配诱导的阿洛培那洛酮形成及海马脑源性神经营养因子

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Rationale Given that the pregnane neurosteroid, 5alpha-pregnan-3alpha-ol-20-one (3alpha,5alpha-THP), is increased following behavioral challenges (e.g., mating), and that there is behavioral-induced biosynthesis of 3alpha,5alpha-THP in midbrain and mesocorticolimbic structures, 3alpha,5alpha-THP likely has a role in homeostasis and motivated reproduction and reproduction-related behaviors (e.g., affect, affiliation). The role of pregnane xenobiotic receptor (PXR), involved in cholesterol metabolism, for these effects is of continued interest.Objectives We hypothesized that there would be differences in brain levels of 3alpha,5alpha-THP following varied behavioral experiences, an effect abrogated by knockdown of PXR in the midbrain.Methods Proestrous rats were infused with PXR antisense oligonucleotides (AS-ODNs) or vehicle to the ventral tegmen-tal area before different behavioral manipulations and assessments. Endpoints were expression levels of PXR in the midbrain, 3alpha,5alpha-THP, and ovarian steroids (estradiol, progesterone, dihydroprogesterone) in the midbrain, striatum, hippocampus, hypothalamus, prefrontal cortex, and plasma. Results Across experiments, knocking down PXR reduced PXR expression and 3alpha,5alpha-THP levels in the midbrain and hippocampus. There were differences in terms of the behavioral manipulations, such that paced mating had the most robust effects to increase 3alpha,5alpha-THP levels and reduce open field exploration and social interaction. An additional question that was addressed is whether brain-derived neurotrophic factor (BDNF) is a downstream factor for regulating effects of behavioral-induced 3alpha,5alpha-THP biosynthesis. Rats infused with PXR AS-ODNs had lower levels of BDNF in the hippocampus. Conclusion Thus, PXR may be a regulator of mating-induced 3alpha,5alpha-THP formation and behavioral changes and neural plasticity, such as BDNF.
机译:基本原理鉴于行为挑战(例如,交配)后妊娠神经甾体5alpha-pregnan-3alpha-ol-20-one(3alpha,5alpha-THP)增加,并且存在行为诱导的3alpha,5alpha-生物合成在中脑和中皮层皮质结构中的THP,3alpha,5alpha-THP可能在体内稳态和促进生殖以及与生殖有关的行为(如影响,隶属关系)中起作用。人们一直关注着涉及胆固醇代谢的妊娠异种生物受体(PXR)的作用。目的我们假设,不同的行为经历会导致3alpha,5alpha-THP的大脑水平存在差异,而敲低会取消这种效应。方法在不同的行为操作和评估前,向早孕大鼠的腹侧被膜注射PXR反义寡核苷酸(AS-ODN)或赋形剂。终点是中脑,纹状体,海马,下丘脑,前额叶皮层和血浆中脑,3α,5α-THP和卵巢类固醇(雌二醇,孕酮,二氢孕酮)中PXR的表达水平。结果在整个实验中,敲低PXR会降低中脑和海马中PXR的表达以及3alpha,5alpha-THP的水平。行为操纵方面存在差异,因此,有规律的交配对增加3alpha,5alpha-THP水平并减少野外探索和社交互动具有最强大的作用。解决的另一个问题是脑源性神经营养因子(BDNF)是否是调节行为诱导的3alpha,5alpha-THP生物合成作用的下游因子。注入PXR AS-ODN的大鼠海马中的BDNF水平较低。结论因此,PXR可能是交配诱导的3alpha,5alpha-THP形成,行为改变和神经可塑性(如BDNF)的调节剂。

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