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Overlap of dopaminergic adrenergic and serotoninergic receptors and complementarity of their subtypes in primate prefrontal cortex

机译:灵长类前额叶皮层中多巴胺能肾上腺素能和5-羟色胺能受体的重叠及其亚型的互补性

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摘要

Quantitative in vitro autoradiography was used to determine and compare the areal and laminar distribution of the major dopaminergic, adrenergic, and serotonergic neurotransmitter receptors in 4 cytoarchitectonic regions of the prefrontal cortex (Walker's areas 12, 46, 9, and 25) in adult rhesus monkeys. The selective ligands, 3H-SCH- 23390, 3H-raclopride, 3H-prazosin, and 3H-clonidine were used to label the D1 and D2 dopamine receptor subtypes and the alpha 1- and alpha 2- adrenergic receptors, respectively, while 125I-iodopindolol was used to detect beta-adrenergic receptors. The radioligands, 3H-5- hydroxytryptamine and 3H-ketanserin labeled, respectively, the 5-HT1 and 5-HT2 receptors. Densitometry was performed on all cortical layers and sublayers for each of the 7 ligands to allow quantitative as well as qualitative comparison among them in each cytoarchitectonic area. Although each monoamine receptor was distributed in a distinctive laminar-specific pattern that was remarkably similar from area to area, there was considerable overlap among the dopaminergic, adrenergic, and serotoninergic receptors, while subtypes of the same receptor class tended to have complementary laminar profiles and different concentrations. Thus, the D1 dopamine, the alpha 1- and alpha 2- adrenergic, and the 5-HT1 receptors were present in highest relative concentration in superficial layers I, II, and IIIa (the “S” group). In contrast, the beta 1- and beta 2-adrenergic subtypes and the 5-HT2 receptor had their highest concentrations in the intermediate layers, IIIb and IV (the “I” group), while the D2 receptor was distinguished by relatively high concentrations in the deep layer V compared to all other layers (the “D” class). Consequently, clear laminar differences were observed in the D1 vs D2 dopaminergic, the alpha- vs beta- adrenergic, and the 5-HT1 vs 5-HT2 serotoninergic receptor subtypes in all 4 areas examined. The anatomical overlap of different monoaminergic receptors in the same cortical strata suggests that there may be families of receptors linked by localization on common targets, while the complementary laminar distribution of the D1 vs D2, the 5-HT1 vs 5- HT2 and the alpha- vs beta-adrenergic receptors raises the possibility that different subtypes within a given class may have distinctive actions in cortex by virtue of their localization on different cells or possibly different portions of the same cell. Understanding the anatomical arrangement of receptors within the cortical layers may aid in the analysis of monoaminergic modulation of higher cortical function.
机译:体外放射自显影技术用于确定和比较成年恒河猴前额叶皮层的4个细胞结构区域(Walker区域12、46、9和25)中主要的多巴胺能,肾上腺素能和血清素能神经递质受体的面积和层流分布。 。选择性配体3H-SCH-23390、3H-雷氯必利,3H-哌唑嗪和3H-可乐定分别用于标记D1和D2多巴胺受体亚型以及α1-和α2-肾上腺素受体,而125 I-碘潘多洛用于检测β-肾上腺素受体。放射性配体,3H-5-羟色胺和3H-酮色林分别标记了5-HT1和5-HT2受体。对7种配体的每一个在所有皮质层和亚层上进行光密度测定,以允许在每个细胞结构区域中对它们进行定量和定性比较。尽管每个单胺受体以独特的层流特异性模式分布,在各个区域之间非常相似,但是多巴胺能,肾上腺素能和5-羟色胺能受体之间存在相当多的重叠,而同一受体类别的亚型往往具有互补的层流特征。不同的浓度。因此,D1多巴胺,α1和α2肾上腺素以及5-HT1受体以最高相对浓度存在于表层I,II和IIIa(“ S”组)中。相反,β1和β2肾上腺素亚型和5-HT 2受体在中间层IIIb和IV(“ I”组)中具有最高的浓度,而D2受体的特征在于中间层中相对较高的浓度。与所有其他层(“ D”类)相比,深层V。因此,在所有检查的4个区域中,D1对D2多巴胺能,α-对β-肾上腺素能和5-HT1对5-HT2 5-羟色胺能受体亚型均观察到明显的层流差异。同一皮层中不同单胺能受体的解剖结构重叠表明,可能存在通过定位在共同靶标上而连接的受体家族,而D1对D2、5-HT1对5-HT2和α-与β-肾上腺素能受体相比,给定类别的不同亚型可能会因其位于不同细胞或同一细胞不同部位的不同而在皮质中具有独特的作用。了解皮质层内受体的解剖结构可能有助于分析更高皮质功能的单胺能调节。

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