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GABAergic Control of Nigrostriatal and Mesolimbic Dopamine in the Rat Brain

机译:大鼠脑黑质纹状体和中脑边缘多巴胺的GABA能控制

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摘要

Purpose: The present study assessed the effects of the GABAA receptor (R) agonist muscimol (MUS), and the GABAAR antagonist bicuculline (BIC) on neocortical and subcortical radioligand binding to dopamine D2/3Rs in relation to motor and exploratory behaviors in the rat.Methods: D2/3R binding was measured with small animal SPECT in baseline and after challenge with either 1 mg/kg MUS or 1 mg/kg BIC, using [123I]IBZM as radioligand. Motor/exploratory behaviors were assessed for 30 min in an open field prior to radioligand administration. Anatomical information was gained with a dedicated small animal MRI tomograph. Based on the Paxinos rat brain atlas, regions of interest were defined on SPECT-MRI overlays. Estimations of the binding potentials in baseline and after challenges were obtained by computing ratios of the specifically bound compartments to the cerebellar reference region.Results: After MUS, D2/3R binding was significantly reduced in caudateputamen, nucleus accumbens, thalamus, substania nigra/ventral tegmental area, and posterior hippocampus relative to baseline (0.005 ≤ p ≤ 0.012). In all these areas, except for the thalamus, D2/3R binding was negatively correlated with grooming in the first half and positively correlated with various motor/exploratory behaviors in the second half of the testing session. After BIC, D2/3R binding was significantly elevated in caudateputamen (p = 0.022) and thalamus (p = 0.047) relative to baseline. D2/3R binding in caudateputamen and thalamus was correlated negatively with sitting duration and sitting frequency and positively with motor/exploratory behaviors in the first half of the testing time.Conclusions: Findings indicate direct GABAergic control over nigrostriatal and mesolimbic dopamine levels in relation to behavioral action. This may be of relevance for neuropsychiatric conditions such as anxiety disorder and schizophrenia, which are characterized by both dopaminergic and GABAergic dysfunction.
机译:目的:本研究评估了GABAA受体激动剂麝香酚(MUS)和GABAAR拮抗剂双小分子碱(BIC)对新皮层和皮层下放射性配体与多巴胺D2 / 3Rs结合的影响方法:在基线时和用1 mg / kg MUS或1 mg / kg BIC攻击后,用小型动物SPECT测量D2 / 3R结合,使用[ 123 I] IBZM作为放射性配体。在给予放射性配体之前,在空旷的地方对运动/探索行为进行了30分钟的评估。解剖信息是通过专用的小动物MRI断层扫描仪获得的。基于Paxinos大鼠脑图谱,在SPECT-MRI叠加层上定义了感兴趣的区域。通过计算特异性结合的区室与小脑参考区的比率,可以估算基线和激发后的结合潜力。结果:MUS后,尾足,伏隔核中的D2 / 3R结合明显减少,丘脑,黑质(黑质/腹侧被盖区和海马后部)相对于基线(0.005≤p≤0.012)。在所有这些区域中,除丘脑外,D2 / 3R结合在上半年与修饰水平呈负相关,在下半年与各种运动/探索行为呈正相关。 BIC后,相对于基线,尾足状肌(p = 0.022)和丘脑(p = 0.047)的D2 / 3R结合显着升高。在测试时间的前半段,尾状丘脑和丘脑中的D2 / 3R结合与坐姿持续时间和坐姿频率呈负相关,与运动/探索行为呈正相关。结论:研究结果表明,直接GABA能控制黑纹状体和黑质中脑边缘多巴胺水平与行为行为有关。这可能与神经精神疾病有关,例如焦虑症和精神分裂症,其特征是多巴胺能和GABA能功能障碍。

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