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Adenosine Receptor Involvement in Methamphetamine Reward and Relapse

Adenosine Receptor Involvement in Methamphetamine Reward and Relapse
腺苷受体参与甲基苯丙胺奖励和复发
批准号:
8995196
负责人:
Ryan K Bachtell
金额:
$37.28万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-01-01 至 2017-12-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):药物成瘾是一种脑部疾病,其特征是向强迫性药物使用发展,并在戒断期间复发寻求药物。这项新应用的主要目的是加强我们对甲基苯丙胺滥用的神经生物学和神经化学机制的理解。伏隔核(NAc)是大脑复杂回路中的一个区域,它介导最初的药物奖励和戒断期间的复发。在NAc中,多巴胺(DA)和腺苷(ADO)受体亚型在不同的神经元亚群中共定位,在细胞功能中起拮抗作用。因此,已知具有D1/A1或D2/A2A受体亚型共定位的神经元形成不同的输出通路,影响行为的特定方面。DA和ADO受体亚型的相反作用可以通过直接的物理相互作用(即异质受体)和/或通过G蛋白介导的信号级联的差异激活来介导。这些定位于不同神经元群的对立受体亚型如何调节成瘾行为尚不清楚。我们有证据表明,adoa1受体亚型的刺激,而不是A2A,抑制甲基苯丙胺强化和复发。这些影响不同于我们的发现,可卡因复发是由非选择性刺激的A1和A2A受体抑制。我们的主要假设是,长期使用甲基苯丙胺会特异性地破坏中脑边缘DA通路中的ADO A1受体信号,使DA D1受体不受调节,从而导致甲基苯丙胺强化和复发。在Aim 1中,实验将评估甲基苯丙胺诱导的中脑边缘系统ADO受体亚型的变化。进一步的研究将确定甲基苯丙胺摄入如何改变ADO和DA受体亚型之间的异质相互作用。Aim 2的实验旨在分别分析特定ADO受体亚型对甲基安非他明奖励和强化的差异影响,分别采用位置条件反射和递进比例反应。目的3旨在探讨ADO受体亚型如何不同地影响甲基苯丙胺寻求的恢复。进一步的研究将探讨ADO受体亚型的差异影响如何与NAc中特定DA受体亚型诱导的甲基苯丙胺寻找相互作用。总之,这些研究为我们更好地理解与甲基苯丙胺滥用有关的大脑机制提供了潜力,这种机制似乎与另一种滥用精神兴奋剂可卡因有关的机制有本质上的不同。这些研究提供了创造新的治疗策略的潜力,例如A1受体激动剂或二价受体配体(例如D1拮抗剂-A1激动剂),它们可以特异性靶向定位于特定神经回路中特定神经元亚群的异源受体,这些神经回路经历甲基苯丙胺诱导的改变。
英文摘要
DESCRIPTION (provided by applicant): Drug addiction is a brain disorder characterized by a progression toward compulsive drug use and relapse to drug seeking during abstinence. The primary goal of this new application is to enhance our understanding of the neurobiological and neurochemical mechanisms involved in methamphetamine abuse. The nucleus accumbens (NAc) is a brain region in a complex circuit that mediates initial drug reward and relapse during periods of abstinence. In the NAc, subtypes of dopamine (DA) and adenosine (ADO) receptors are co-localized in distinct subpopulations of neurons where they play antagonistic roles on cellular functioning. Thus, neurons having co-localization of either D1/A1 or D2/A2A receptor subtypes are known to form distinct output pathways, which influence specific aspects of behavior. The opposing actions of DA and ADO receptor subtypes can be mediated by direct physical interactions (i.e. heteromeric receptors), and/or through differential activation of G- protein mediated signaling cascades. How these opposing receptor subtypes localized to distinct neuronal populations regulate addictive behavior is unknown. We have evidence to suggest that stimulation of ADO A1, but not A2A, receptor subtype inhibits methamphetamine reinforcement and relapse. These effects differ from our findings that cocaine relapse is inhibited by non-selective stimulation of A1 and A2A receptors. Our overarching hypothesis is that chronic methamphetamine use specifically disrupts ADO A1 receptor signaling in the mesolimbic DA pathway, leaving DA D1 receptors unregulated contributing to methamphetamine reinforcement and relapse. In Aim 1, experiments will assess methamphetamine-induced changes on ADO receptor subtypes within the mesolimbic system. Additional studies will identify how methamphetamine intake alters the heteromeric interactions between ADO and DA receptor subtypes. Experiments in Aim 2 are designed to dissect the differential influence of specific ADO receptor subtypes on methamphetamine reward and reinforcement using place conditioning and progressive ratio responding, respectively. Aim 3 is designed to explore how ADO receptor subtypes may differentially influence reinstatement to methamphetamine seeking. Additional studies will explore how the differential influence of ADO receptor subtypes interact with methamphetamine seeking induced by specific DA receptor subtypes in the NAc. Together these studies offer the potential to better our understanding of the brain mechanisms involved in methamphetamine abuse that appear to be substantially different than mechanisms associated with another abused psychostimulant, cocaine. These studies offer the potential to create novel treatment strategies such as A1 receptor agonists or bivalent receptor ligands (e.g. D1 antagonist-A1 agonist) that could specifically target heteromeric receptors localized to specific subpopulations of neurons within specific neural circuits that undergo methamphetamine- induced alterations.
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Identification of genes and genetic networks contributing to opioid use disorder traits in the Hybrid Rat Diversity Panel
  • 批准号:
    10219230
  • 项目类别:
  • 资助金额:
    $47.39万
  • 财政年份:
    2020
  • 负责人:
    Ryan K Bachtell
  • 依托单位:
Identification of genes and genetic networks contributing to opioid use disorder traits in the Hybrid Rat Diversity Panel
  • 批准号:
    10627945
  • 项目类别:
  • 资助金额:
    $47.67万
  • 财政年份:
    2020
  • 负责人:
    Ryan K Bachtell
  • 依托单位:
Identification of genes and genetic networks contributing to opioid use disorder traits in the Hybrid Rat Diversity Panel
  • 批准号:
    10056472
  • 项目类别:
  • 资助金额:
    $49.51万
  • 财政年份:
    2020
  • 负责人:
    Ryan K Bachtell
  • 依托单位:
Identification of genes and genetic networks contributing to opioid use disorder traits in the Hybrid Rat Diversity Panel
  • 批准号:
    10399736
  • 项目类别:
  • 资助金额:
    $1.63万
  • 财政年份:
    2020
  • 负责人:
    Ryan K Bachtell
  • 依托单位:
海外基金