Prelimbic cortex and nucleus accumbens core resting state signaling dynamics as a biomarker for cocaine seeking behaviors

Metika L. Ngbokoli, Joaquin E. Douton, Regina M. Carelli
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引用次数: 1

Abstract

Substance use disorders (SUDs) are characterized by maladaptive signaling in the prefrontal cortex and associated regions, however precisely how these drug-induced abnormalities may be linked to drug seeking/taking behaviors is not well understood. Here, in vivo local field potential (LFP) electrophysiology was used in rats to examine the relationship between overall spontaneous (resting state) activity within the prelimbic cortex (PrL) and nucleus accumbens (NAc) core, and their functional connectivity, to cocaine taking and seeking behaviors. Adult, male Sprague-Dawley rats were trained to self-administer either intravenous cocaine (0.33 mg/inf) or water reinforcement during 6-hour daily sessions over 2 weeks; extinction sessions were completed immediately after self-administration training and following 30 days experimenter-imposed abstinence. Rest LFP recordings were completed during 3 recording periods (15 min each in a chamber different from the self-administration context) conducted (1) prior to self-administration training (rest LFP 1) (2) immediately after 2 weeks of self-administration training (rest LFP 2) and (3) following 1 month abstinence (rest LFP 3). Our findings show that resting state LFP power in the PrL recorded prior to training (Rest LFP 1) was positively correlated with total cocaine intake and escalation of cocaine seeking at the beta frequency range. Immediately after self-administration training (Rest LFP 2) power in the NAc core at gamma frequency was negatively correlated with incubation of cocaine craving. For rats trained to self-administer water, no significant correlations were observed. Together, these findings show that resting state LFP at specific timepoints in the addiction cycle can serve as unique predictors (biomarkers) of cocaine use disorders.

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前边缘皮层和伏隔核核心静息状态信号动力学作为可卡因寻求行为的生物标志物
物质使用障碍(SUDs)的特征是前额皮质和相关区域的信号适应不良,然而,这些药物引起的异常如何与药物寻求/服用行为联系起来还不清楚。本研究采用大鼠体内局部场电位(LFP)电生理学方法,研究了脑前边缘皮层(PrL)和伏隔核(NAc)核心的整体自发(静息状态)活动及其功能连系与可卡因吸食和寻找行为之间的关系。成年雄性Sprague-Dawley大鼠接受训练,在2周内每天6小时内自行静脉注射可卡因(0.33 mg/inf)或补水;在自我管理训练和30天的实验强制戒断之后,立即完成了戒断课程。其他联赛记录期间完成3是时间(15分钟每个室实行不同上下文)进行(1)服药前培训(Rest LFP 1)(2)两周后立即自治制度培训(Rest LFP 2)和(3)1个月后禁欲(其他LFP 3)。我们的研究结果表明,静息状态LFP在PrL记录前培训(Rest LFP 1)可卡因摄入总量呈正相关,和升级在β频率范围内寻找可卡因。在自我给药训练后(休息LFP 2), NAc核心的伽马频率功率与可卡因渴望的潜伏期呈负相关。对于自我饮水训练的大鼠,没有观察到显著的相关性。总之,这些发现表明,在成瘾周期的特定时间点,静息状态LFP可以作为可卡因使用障碍的独特预测因子(生物标志物)。
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来源期刊
Addiction neuroscience
Addiction neuroscience Neuroscience (General)
CiteScore
1.30
自引率
0.00%
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0
审稿时长
118 days
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