首页> 美国卫生研究院文献>The Journal of Neuroscience >The NMDA glycine site antagonist (+)-HA-966 selectively regulates conditioned stress-induced metabolic activation of the mesoprefrontal cortical dopamine but not serotonin systems: a behavioral neuroendocrine and neurochemical study in the rat
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The NMDA glycine site antagonist (+)-HA-966 selectively regulates conditioned stress-induced metabolic activation of the mesoprefrontal cortical dopamine but not serotonin systems: a behavioral neuroendocrine and neurochemical study in the rat

机译:NMDA甘氨酸位点拮抗剂(+)-HA-966选择性调节条件应激诱导的中前额叶皮质多巴胺的代谢活化但不调节5-羟色胺系统:在大鼠中的行为神经内分泌和神经化学研究

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摘要

Animals confronting threatening stimuli respond with a coordinated set of autonomic, neuroendocrine, neurochemical, and behavioral responses that constitute the stress response. The role of the NMDA receptor and its glycine modulatory site was investigated in a rat conditioned stress model. Behavioral, neuroendocrine, and neurochemical analyses were conducted. Regional dopamine (DA) and serotonin (5-HT) utilization was assessed by postmortem tissue measurements of metabolite-to-parent neurotransmitter ratios. Rats were conditioned to fear a tone previously paired with footshock. The following day, rats were systemically administered saline or the NMDA glycine site antagonist (+)-HA-966 before exposure to thirty minutes of conditioned stress. Conditioned stress resulted in a selective increase in medial prefrontal cortical DA and 5-HT utilization, elevation in serum corticosterone, and freezing behavior in control animals. The conditioned stress-induced increase in DA utilization in control animals was also detected in the lateral prefrontal cortex and nucleus accumbens, whereas DA utilization was not affected in the perirhinal or cingulate cortices, lateral-basolateral amygdaloid complex, anterior ventromedial caudatoputamen, or posterior dorsolateral caudatoputamen. Pretreatment with (+)-HA-966 at 15 mg/kg completely abolished the conditioned stress-induced increase in DA utilization in the medial and lateral prefrontal cortices. This effect was regionally specific since (+)-HA-966 pretreatment did not block increased DA utilization in the nucleus accumbens. This effect was also neurochemically specific since the stress-induced increase in 5-HT utilization in the medial prefrontal cortex was not affected by (+)-HA-966 pretreatment. Pretreatment with (+)-HA-966 did not affect stress-induced serum corticosterone elevation but did attenuate the freezing response. Control experiments demonstrated that (+)-HA-966 pretreatment did not (1) induce sedation, (2) interfere with habituation to a novel environment, (3) alter basal DA, 5-HT, or serum corticosterone levels, or (4) block acquisition of aversive memories. These data suggest that the NMDA receptor complex and associated glycine modulatory site may play an important role in the afferent control of the mesoprefrontal cortical DA system during conditioned stress. The relevance of these findings to schizophrenia and human anxiety disorders such as post- traumatic stress disorder are discussed.
机译:面对威胁性刺激的动物会以协调的一组自主神经,神经内分泌,神经化学和行为反应来响应,这些反应构成了应激反应。在大鼠条件应激模型中研究了NMDA受体及其甘氨酸调节位点的作用。进行了行为,神经内分泌和神经化学分析。通过尸体组织代谢物与父代神经递质之比的死后测量来评估区域多巴胺(DA)和血清素(5-HT)的利用率。使大鼠适应恐惧的情绪,这种情绪以前与脚震有关。第二天,在暴露于三十分钟的条件应激之前,对大鼠全身性地施用盐水或NMDA甘氨酸位点拮抗剂(+)-HA-966。条件应激导致对照动物中内侧前额叶皮层DA和5-HT利用率,血清皮质酮水平升高和冰冻行为的选择性增加。在外侧前额叶皮层和伏隔核中也发现了条件应激诱导的对照动物中DA利用率的增加,而在周围或扣带状皮层,外侧基底外侧杏仁核复合体,前腹侧前内侧背突或背面外侧中,DA利用率未受到影响caudatoputamen。 (+)-HA-966的15 mg / kg预处理​​完全消除了条件应激诱导的内侧和外侧前额叶皮层中DA利用率的增加。由于(+)-HA-966预处理并未阻止伏隔核中DA利用率的提高,因此该效果在区域上是特定的。这种作用也是神经化学特异的,因为在压力下诱导的内侧前额叶皮层5-HT利用率增加不受(+)-HA-966预处理的影响。 (+)-HA-966预处理不会影响应激诱导的血清皮质酮升高,但会减弱冰冻反应。对照实验表明(+)-HA-966预处理未(1)引起镇静作用;(2)干扰了适应新环境的习惯;(3)改变了基础DA,5-HT或血清皮质酮水平,或者(4 )阻止获取厌恶性记忆。这些数据表明,NMDA受体复合物和相关的甘氨酸调节位点可能在条件应激过程中对中前额皮质DA系统的传入控制中起重要作用。讨论了这些发现与精神分裂症和人类焦虑症(如创伤后应激障碍)的相关性。

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