首页> 外文期刊>Behavioural Brain Research: An International Journal >A therapeutic combination of metyrapone and oxazepam increases brain levels of GABA-active neurosteroids and decreases cocaine self-administration in male rats
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A therapeutic combination of metyrapone and oxazepam increases brain levels of GABA-active neurosteroids and decreases cocaine self-administration in male rats

机译:甲嘧酮和氧气泮的治疗组合增加了GABA活性神经激素的脑水平,并降低了雄性大鼠的可卡因自我给药

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In rodents, the behavioral and neurochemical effects resulting from the pharmacological blockade of the hypothalamo-pituitary-adrenal (HPA) axis are unclear. Metyrapone, a corticosterone synthesis inhibitor, has been demonstrated to reduce cocaine-related behaviors, especially in a low-dose combination with oxazepam, a benzodiazepine. Although this combination therapy (MET/OX) also reduces drug-taking and drug-seeking behaviors in both rodents and cocaine-dependent humans, these effects are not correlated with plasma glucocorticoid levels. In this brief report, we present data demonstrating that this MET/OX combination enhances brain levels of the GABA-active steroid metabolites, tetrahydrodeoxy-corticosterone (THDOC) and allopregnanolone. Male rats, trained to self-administer cocaine or that received yoked-saline infusions, were pretreated with MET/OX, at doses that reduced cocaine-motivated responding, or vehicle. Allopregnanolone and THDOC were measured using liquid chromatography-mass spectroscopy (LC-MS/MS) in the prefrontal cortex and amygdala in the brains from these rats. THDOC levels were enhanced following MET/OX pretreatment in both brain regions, regardless of cocaine self-administration experience. However, allopregnanolone was selectively enhanced in the rats that self-administered cocaine, but not in rats in the yoked-saline group. Thus, the MET/OX combination increased neurosteroid content in brain regions important for drug addiction.
机译:在啮齿动物中,由下丘脑 - 垂体 - 肾上腺(HPA)轴的药理学阻滞所产生的行为和神经化学效果尚不清楚。已经证明了一种皮质酮合成抑制剂,一种皮质酮合成抑制剂,以减少可卡因相关行为,特别是在与苯并二氮杂卓的恶唑泮的低剂量组合中。虽然这种联合治疗(MET /牛)也降低了啮齿动物和可卡因依赖性人类的药物吸毒和寻求药物行为,但这些效果与血浆糖皮质激素水平无关。在本简要报告中,我们呈现证明该MET /氧组合增强了GABA活性类固醇代谢物,四氢氧基 - 皮质酮(THDOC)和丙尼泊尔松的脑水平。培训以自我施用可卡因或接受轭 - 盐水输注的雄性大鼠用MET /牛预处理,用剂量减少可卡因 - 激励响应或载体。使用液相色谱 - 质谱(LC-MS / MS)在来自这些大鼠的大脑中的液相色谱 - 质谱(LC-MS / MS)测量亚丙醇酮和THDOC。无论可卡因自我管理经验如何,在脑区26次脑区预处理后,THDOC水平增强。然而,在自我施用可卡因的大鼠中选择性地增强了亚丙醇尼泊尔酮,但不在烟草基团中的大鼠中。因此,MET / OX组合增加了对药物成瘾重要的脑区神经活体含量。

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