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Medial habenula cholinergic signaling regulates cocaine‐associated relapse‐like behavior

机译:内侧毛皮胆碱能信号调节可卡因相关的复发样行为

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摘要

Abstract Propensity to relapse, even following long periods of abstinence, is a key feature in substance use disorders. Relapse and relapse‐like behaviors are known to be induced, in part, by re‐exposure to drug‐associated cues. Yet, while many critical nodes in the neural circuitry contributing to relapse have been identified and studied, a full description of the networks driving reinstatement of drug‐seeking behaviors is lacking. One area that may provide further insight to the mechanisms of relapse is the habenula complex, an epithalamic region composed of lateral and medial (MHb) substructures, each with unique cell and target populations. Although well conserved across vertebrate species, the functions of the MHb are not well understood. Recent research has demonstrated that the MHb regulates nicotine aversion and withdrawal. However, it remains undetermined whether MHb function is limited to nicotine and aversive stimuli or if MHb circuit regulates responses to other drugs of abuse. Advances in circuit‐level manipulations now allow for cell‐type and temporally specific manipulations during behavior, specifically in spatially restrictive brain regions, such as the MHb. In this study, we focus on the response of the MHb to reinstatement of cocaine‐associated behavior, demonstrating that cocaine‐primed reinstatement of conditioned place preference engages habenula circuitry. Using chemogenetics, we demonstrate that MHb activity is sufficient to induce reinstatement behavior. Together, these data identify the MHb as a key hub in the circuitry underlying reinstatement and may serve as a target for regulating relapse‐like behaviors.
机译:摘要复发的倾向,即使在长期的禁欲之后,也是物质使用障碍的关键特征。已知复发和复发样行为部分地部分地通过再暴露于药物相关的提示。然而,虽然已经识别和研究了有助于复发的神经电路中的许多关键节点,但是缺乏对恢复药物寻求行为的网络的完整描述。可以提供进一步洞察复发机制的一个区域是Habenula络合物,由横向和内侧(MHB)副结构组成的血上性区域,每个细胞和靶群体具有独特的细胞和靶群。虽然脊椎动物种类良好,但MHB的功能尚不清楚。最近的研究表明,MHB调节尼古丁厌恶和戒断。然而,它仍未确定MHB功能是否限于尼古丁和厌恶刺激,或者MHB电路调节对其他滥用药物的响应。电路级操作的进步现在允许在行为中进行细胞类型和时间上特定的操纵,特别是在空间限制性脑区域中,例如MHB。在这项研究中,我们专注于MHB恢复恢复可卡因相关行为,证明了可卡因初步恢复条件的地方偏好啮合哈伯拉电路。使用中间体,我们证明MHB活性足以诱导恢复行为。这些数据一起将MHB识别为电路中的基础恢复的电路中的关键集线器,并且可以用作用于调节类似复发行为的目标。

著录项

  • 来源
    《Addiction biology》 |2019年第3期|共11页
  • 作者单位

    Department of Neurobiology and Behavior Ayala School of Biological SciencesUniversity of;

    Department of Anatomy and Neurobiology School of MedicineUniversity of CaliforniaIrvine CA USA;

    Department of Biological Sciences Neuroscience and BehaviorMount Holyoke CollegeSouth Hadley MA USA;

    Department of Neurobiology and Behavior Ayala School of Biological SciencesUniversity of;

    Department of Neurobiology and Behavior Ayala School of Biological SciencesUniversity of;

    Department of Neurobiology and Behavior Ayala School of Biological SciencesUniversity of;

    Department of Neurobiology and Behavior Ayala School of Biological SciencesUniversity of;

    Department of Neurobiology and Behavior Ayala School of Biological SciencesUniversity of;

    Department of Neurobiology and Behavior Ayala School of Biological SciencesUniversity of;

    Department of Neurobiology and Behavior Ayala School of Biological SciencesUniversity of;

    Department of Anatomy and Neurobiology School of MedicineUniversity of CaliforniaIrvine CA USA;

    Department of Neurobiology and Behavior Ayala School of Biological SciencesUniversity of;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学与精神病学;
  • 关键词

    acetylcholine; cocaine; conditioned place preference; DREADDs; medial habenula; reinstatement;

    机译:乙酰胆碱;可卡因;条件的地方偏好;Dreadds;内侧湿地;恢复;

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