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首页> 外文期刊>Behavioural Brain Research: An International Journal >DMCM, a benzodiazepine site inverse agonist, improves active avoidance and motivation in the rat
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DMCM, a benzodiazepine site inverse agonist, improves active avoidance and motivation in the rat

机译:DMCM是一种苯二氮卓类反向激动剂,可改善大鼠的主动回避和动机

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摘要

There are several modulatory sites at GABA A receptors, which mediate the actions of many drugs, among them benzodiazepine. Three kinds of allosteric modulators act through the benzodiazepine binding site: positive (agonist), neutral (antagonist), and negative (inverse agonist). The goal of the present study was to examine the influence of the inverse agonist methyl 6,7-dimethoxy-4-ethyl-beta-carboline-3-carboxylate (DMCM) acting on α GABA A receptor and compare its dose-response effects on memory and depression-like behavior. We independently studied the effects of DMCM (0.05-1.0mg/kg) on retention versus acquisition of active avoidance and depression-like behavior in the forced swim test. Throughout the study, drugs were given intraperitoneally, 30min before testing. ANOVA has showed that treatment with DMCM significantly affected retrieval of avoidance response (p0.05), exerted promnesic effects in inverted U-shape manner. Dunnett's test indicated that the DMCM avoidance-facilitatory dose was 0.1mg/kg. At the dose facilitating retrieval of avoidance memory, DMCM significantly (p0.05, comparison of regression coefficients by Student's t-test) and progressively increased acquisition rate during 5 days training, compared to the saline group. In forced swim test, ANOVA indicated statistically significant effects of DMCM (p0.05). Dunnett's analysis showed that DMCM significantly decreased immobility time at the dose of 0.1mg/kg, exerted acute antidepressant-like effects. Our results experimentally support the findings that under certain circumstances, nonselective benzodiazepine site inverse agonists, produce memory-enhancing and antidepressant-like effects. The molecular and neuronal substrates linking the actions of specific GABA-benzodiazepine receptor complex subunits remains to be further elucidated.
机译:GABA A受体有几个调节位点,介导许多药物的作用,其中包括苯二氮卓。三种变构调节剂通过苯并二氮杂卓结合位点起作用:正(激动剂),中性(拮抗剂)和负(反向激动剂)。本研究的目的是研究作用于αGABA A受体的反向激动剂6,7-二甲氧基-4-乙基-β-咔啉-3-羧酸甲酯(DMCM)的作用,并比较其对αGABA A受体的剂量效应记忆和抑郁样行为。我们独立研究了DMCM(0.05-1.0mg / kg)对强迫游泳试验中retention留与获得主动回避和抑郁样行为的影响。在整个研究过程中,测试前30分钟腹膜内给药。方差分析表明,DMCM的治疗显着影响了回避反应的恢复(p <0.05),并以倒U形方式发挥了记忆作用。 Dunnett检验表明,DMCM避免促进剂量为0.1mg / kg。与生理盐水组相比,在促进回避记忆恢复的剂量下,DMCM在5天训练期间显着(p <0.05,通过Student's t检验比较回归系数)并逐渐增加采集率。在强迫游泳试验中,方差分析表明DMCM有统计学意义(p <0.05)。 Dunnett的分析表明,在0.1mg / kg的剂量下,DMCM显着减少了不动时间,发挥了类似抗抑郁药的急性作用。我们的结果在实验上支持了以下发现:在某些情况下,非选择性苯二氮卓类位点反向激动剂会产生记忆增强和抗抑郁样作用。连接特定的GABA-苯并二氮杂receptor受体复合物亚基作用的分子和神经元底物仍有待进一步阐明。

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