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Presynaptic regulation of extracellular dopamine levels in the medial prefrontal cortex and striatum during tyrosine depletion

机译:酪氨酸耗尽期间前额叶皮层和纹状体中细胞外多巴胺水平的突触前调节

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摘要

Rationale: Available neurochemical probes that lower brain dopamine (DA) levels in man are limited by their tolerability and efficacy. For instance, the acute lowering of brain tyrosine is well tolerated, but only modestly lowers brain DA levels. Modification of tyrosine depletion to robustly lower DA levels would provide a superior research probe. Objectives: The objective of this study was to determine whether the subthreshold stimulation of presynaptic DA receptors would potentiate tyrosine depletion-induced effects on extracellular DA levels in the medial prefrontal cortex (MPFC) and striatum of the rat. Methods: We administered quinpirole, a predominantly DA type 2 (D2R) receptor agonist, into the MPFC and striatum by reverse dialysis. A tyrosine- and phenylalanine-free neutral amino acid mixture [NAA(-)] IP was used to lower brain tyrosine levels. DA levels in the microdialysate were measured by HPLC with electrochemical detection. Results: Quinpirole dose-dependently lowered DA levels in MPFC as well as in the striatum. NAA(-) alone transiently lowered DA levels (80 % baseline) in the striatum, but had no effect in MPFC. The co-administration of NAA(-) and a subthreshold concentration of quinpirole (6.25 nM) lowered DA levels (50 % baseline) in both the MPFC and striatum. This effect was blocked by the mixed D2R/D3R antagonist haloperidol at IP doses that on their own did not affect DA levels (10.0 nmol/kg in the MPFC and 0.10 nmol/kg in the striatum). Conclusions: Pharmacological stimulation of inhibitory D2R receptors during tyrosine depletion markedly lowers the extracellular DA levels in the MPFC and striatum. The data suggest that combining tyrosine depletion with a low dose of a DA agonist should robustly lower brain regional DA levels in man.
机译:基本原理:可用的神经化学探针:降低人类多巴胺(DA)水平的人受到它们的可耐受性和功效的限制。例如,脑酪氨酸的急性降低是良好的耐受性,但仅适度降低脑DA水平。酪氨酸耗竭的改性较强大的降低DA水平将提供优异的研究探针。目的:本研究的目的是确定突触前DA受体的亚阈值刺激是否会使酪氨酸耗竭诱导的诱导的对大鼠前额甲基质(MPFC)和纹状体中细胞外DA水平的影响。方法:通过反转透析给予喹喔啉,主要是DA型2(D2R)受体激动剂,进入MPFC和纹状体。酪氨酸和苯丙氨酸 - 无苯丙氨酸中性氨基酸混合物[Naa( - )] IP用于降低脑酪氨酸水平。通过HPLC具有电化学检测的微透明酸盐中的DA水平。结果:喹罗Lole剂量依赖性降低MPFC和纹状体中的DA水平。 NAA( - )在纹状体中瞬时降低DA水平(80%基线),但在MPFC中没有影响。在MPFC和纹状体中,NAA( - )和喹喔啉(6.25nm)降低DA水平(50%基线)的亚喹罗(6.25nm)的共聚浓度。这种效果被混合的D2R / D3R拮抗剂氟哌啶醇在其自身的IP剂量下阻断,其不影响DA水平(在MPFC中的10.0 nmol / kg和纹状体中的0.10nmol / kg)。结论:酪氨酸耗竭期间抑制性D2R受体的药理刺激显着降低了MPFC和纹状体中的细胞外DA水平。该数据表明,将酪氨酸耗竭与低剂量的DA激动剂组合应鲁布布利地降低人类区域DA水平。

著录项

  • 来源
    《Psychopharmacology》 |2013年第2期|共9页
  • 作者

    BrodnikZ.; DoubleM.; JaskiwG.E.;

  • 作者单位

    Louis Stokes Cleveland DVAMC Research Service 151W 10701 East Blvd Cleveland OH 44106 United;

    Louis Stokes Cleveland DVAMC Research Service 151W 10701 East Blvd Cleveland OH 44106 United;

    Louis Stokes Cleveland DVAMC Psychiatry Service 116A 10701 East Blvd Cleveland OH 44106 United;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

    DOPA; Dopamine; Prefrontal cortex; Receptor; Striatum; Tyrosine;

    机译:多巴;多巴胺;前额叶皮质;受体;纹状体;酪氨酸;

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