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首页> 外文期刊>The Journal of Comparative Neurology >Functional aspects of dopamine metabolism in the putative prefrontal cortex analogue and striatum of pigeons (Columba livia).
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Functional aspects of dopamine metabolism in the putative prefrontal cortex analogue and striatum of pigeons (Columba livia).

机译:假定的前额叶皮质类似物和鸽子纹状体中多巴胺代谢的功能方面。

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摘要

Dopamine (DA) in mammalian associative structures, such as the prefrontal cortex (PFC), plays a prominent role in learning and memory processes, and its homeostasis differs from that of DA in the striatum, a sensorimotor region. The neostriatum caudolaterale (NCL) of birds resembles the mammalian PFC according to connectional, electrophysiological, and behavioral data. In the present study, DA regulation in the associative NCL and the striatal lobus parolfactorius (LPO) of pigeons was compared to uncover possible differences corresponding to those between mammalian PFC and striatum. Extracellular levels of DA and its metabolites (homovanillic acid [HVA], dihydroxyphenylacetic acid [DOPAC]) and the serotonin metabolite 5-hydroxyindoleacetic acid (5-HIAA) were investigated by in vivo microdialysis of urethane-anesthetized pigeons under basal conditions and after systemic administration of D-amphetamine. DA was reliably determined only in LPO dialysates, and DA metabolite levels were significantly higher in LPO than in NCL. The HVA/DOPAC ratio, indicating extracellular lifetime of DA, was more than twice as high in NCL than in LPO dialysates. After amphetamine, DA increased in LPO while still being undetectable in NCL, and DA metabolites decreased in both regions. 5-HIAA slightly decreased in NCL dialysates. Amphetamine effects were delayed in NCL compared with the striatum. In conclusion, effects of amphetamine on the pigeon's ascending monoamine systems resemble those found in mammals, suggesting similar regulatory properties. The neurochemical differences between NCL and LPO parallel those between associative regions, such as PFC and dorsal striatum in mammals. They may reflect weaker regulation of extracellular DA, favoring DAergic volume transmission, in associative than striatal forebrain regions.
机译:哺乳动物联想结构中的多巴胺(DA),例如前额叶皮层(PFC),在学习和记忆过程中起着重要作用,其稳态与感觉运动区纹状体中的DA不同。根据连接,电生理和行为数据,鸟类的新纹状体(NCL)类似于哺乳动物的PFC。在本研究中,比较了鸽子NCL和纹状体波状体(LPO)中的DA调节,以发现与哺乳动物PFC和纹状体之间可能存在的差异。通过在基础条件下和全身性地对氨基甲酸酯麻醉的鸽子进行体内微透析,研究了DA及其代谢产物(高鹅肝酸[HVA],二羟基苯基乙酸[DOPAC])和血清素代谢物5-羟基吲哚乙酸(5-HIAA)的细胞外水平。 D-苯异丙胺的给药。仅在LPO透析液中可以可靠地确定DA,LPO中的DA代谢物水平显着高于NCL。 HVA / DOPAC比值表明DA的细胞外寿命,在NCL中是LPO透析液的两倍以上。苯丙胺后,LPO中的DA增加,而在NCL中仍未检测到,两个区域的DA代谢产物均减少。 NCL透析液中的5-HIAA略有下降。与纹状体相比,NCL中的苯丙胺作用被延迟。总之,苯丙胺对鸽子上升的单胺系统的影响类似于在哺乳动物中发现的那些,表明类似的调节特性。 NCL和LPO之间的神经化学差异与哺乳动物的相关区域(如PFC和背侧纹状体)之间的神经化学差异相似。它们可能反映了与纹状体前脑区域相比,缔合性的细胞外DA调节较弱,有利于DA能量传递。

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