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可卡因诱发的运动活动与伏隔核中神经介素U受体2的表达呈负相关。

Cocaine-Evoked Locomotor Activity Negatively Correlates With the Expression of Neuromedin U Receptor 2 in the Nucleus Accumbens.

作者信息

Kasper James M, Smith Ashley E, Hommel Jonathan D

机构信息

Center for Addiction Research, Department of Pharmacology and Toxicology, University of Texas Medical Branch, Galveston, TX, United States.

Department of Neuroscience, Cell Biology and Anatomy, University of Texas Medical Branch, Galveston, TX, United States.

出版信息

Front Behav Neurosci. 2018 Nov 13;12:271. doi: 10.3389/fnbeh.2018.00271. eCollection 2018.

Abstract

Cocaine use disorder (CUD) is characterized by repeated cycles of drug seeking and drug taking. Currently, there are no available pharmacotherapies to treat CUD, partially due to a lack of a mechanistic understanding of cocaine-evoked alterations in the brain that drive drug-related behaviors. Repeated cocaine use alters expression of numerous genes in addiction-associated areas of the brain and these alterations are in part driven by inter-subject genetic variability. Recent findings have shown the neuropeptide neuromedin U (NMU) and its receptor NMU receptor 2 (NMUR2) decrease drug-related behaviors, but it is unknown if substances of abuse alter NMU or NMUR2 expression. Here, rats were given twice daily saline or cocaine (15 mg/kg, intraperitoneal (IP)) for 5 days and then 7 days with no treatment. All rats were then given a single cocaine treatment and locomotor activity was measured in the acute (non-sensitized) and repeated drug exposure (sensitized) groups. Immediately following locomotor assay, tissue was taken and we demonstrate that accumbal NMUR2 mRNA expression, but not NMU mRNA expression, is negatively correlated with non-sensitized cocaine-evoked locomotor activity, but the correlation is lost following cocaine sensitization. Furthermore, in a separate cohort NMUR2 protein levels also negatively correlated with cocaine-evoked locomotor activity based on immunohistochemical stereology for NMUR2 protein expression. These findings are the first to demonstrate that repeated cocaine exposure causes dysregulated expression of NMUR2 and highlight the deleterious effects of repeated cocaine exposure on neurobiological receptor systems. Restoring the normal function of NMUR2 could be beneficial to the treatment of CUD.

摘要

可卡因使用障碍(CUD)的特征是反复出现寻求药物和服用药物的循环。目前,尚无可用的药物疗法来治疗CUD,部分原因是对驱动与药物相关行为的大脑中可卡因诱发的改变缺乏机制理解。反复使用可卡因会改变大脑成瘾相关区域中众多基因的表达,而这些改变部分是由个体间的基因变异性驱动的。最近的研究结果表明,神经肽神经介素U(NMU)及其受体神经介素U受体2(NMUR2)可减少与药物相关的行为,但滥用物质是否会改变NMU或NMUR2的表达尚不清楚。在此,给大鼠每天腹腔注射(IP)两次生理盐水或可卡因(15mg/kg),持续5天,然后7天不进行处理。然后给所有大鼠单次注射可卡因,并在急性(未致敏)和重复药物暴露(致敏)组中测量运动活性。在运动测定后立即取材,我们证明伏隔核NMUR2 mRNA表达而非NMU mRNA表达与未致敏可卡因诱发的运动活性呈负相关,但在可卡因致敏后这种相关性消失。此外,在另一组实验中,基于NMUR2蛋白表达的免疫组织化学立体学分析,NMUR2蛋白水平也与可卡因诱发的运动活性呈负相关。这些发现首次证明反复接触可卡因会导致NMUR2表达失调,并突出了反复接触可卡因对神经生物学受体系统的有害影响。恢复NMUR2的正常功能可能对治疗CUD有益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/553d/6243026/c01997f278b5/fnbeh-12-00271-g0001.jpg

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