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首页> 外文期刊>Pharmacology, Biochemistry and Behavior >Withdrawal induces distinct patterns of FosB/AFosB expression in outbred Swiss mice classified as susceptible and resistant to ethanol-induced locomotor sensitization
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Withdrawal induces distinct patterns of FosB/AFosB expression in outbred Swiss mice classified as susceptible and resistant to ethanol-induced locomotor sensitization

机译:撤离在被归类为对乙醇诱导的运动致敏敏感并具有抗性的近交瑞士小鼠中诱导FosB / AFosB表达的不同模式

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摘要

Chronic drug exposure and drug withdrawal induce expressive neuronal plasticity which could be considered as both functional and pathological responses. It is well established that neuronal plasticity in the limbic system plays a pivotal role in relapse as well as in compulsive characteristics of drug addiction. Although increases in FosB/DeltaFosB expression constitute one of the most important forms of neuronal plasticity in drug addiction, it is unclear whether they represent functional or pathological plasticity. It is of noteworthy importance the individual differences in the transition from recreational use to drug addiction. These differences have been reported in studies involving the ethanol-induced locomotor sensitization paradigm. In the present study we investigated whether sensitized and non-sensitized mice differ in terms of FosB/DeltaFosB expression. Adult male outbred Swiss mice were daily treated with ethanol or saline for 21 days. According to the locomotor activity in the acquisition phase, they were classified as sensitized (EtOH_High) or non-sensitized (EtOH_Low). After 18 h or 5 days, their brains were processed for FosB/DeltaFosB immunohistochemistry. On the 5th day of withdrawal, we could observe increased FosB/DeltaFosB expression in the EtOH_High group (in the motor cortex), in the EtOH_Low group (in the ventral tegmental area), and in both groups (in the striatum). Differences were more consistent in the EtOH_Low group. Therefore, behavioral variability observed in the acquisition phase of ethanol-induced locomotor sensitization was accompanied by differential neuronal plasticity during withdrawal period. Furthermore, distinct patterns of FosB/DeltaFosB expression detected in sensitized and non-sensitized mice seem to be more related to withdrawal period rather than to chronic drug exposure. Finally, increases in FosB/DeltaFosB expression during withdrawal period could be considered as being due to both functional and pathological plasticity.
机译:慢性药物暴露和停药会诱导表达性神经元可塑性,这既可被视为功能性反应,也可被视为病理反应。众所周知,边缘系统中的神经元可塑性在复发以及药物成瘾的强迫特征中起着关键作用。尽管FosB / DeltaFosB表达的增加是药物成瘾中神经元可塑性的最重要形式之一,但尚不清楚它们是否代表功能或病理可塑性。值得注意的是,从娱乐使用到吸毒成瘾的个体差异。在涉及乙醇诱导的运动致敏范例的研究中已经报道了这些差异。在本研究中,我们调查了敏化小鼠和非敏化小鼠在FosB / DeltaFosB表达方面是否有所不同。成年雄性近交瑞士小鼠每天用乙醇或盐水处理21天。根据获取阶段的运动活动,将其分为敏化(EtOH_High)或不敏化(EtOH_Low)。 18小时或5天后,对其大脑进行FosB / DeltaFosB免疫组织化学处理。在戒断的第5天,我们可以观察到EtOH_High组(运动皮层),EtOH_Low组(腹侧被盖区)以及两组(纹状体)中FosB / DeltaFosB表达增加。 EtOH_Low组之间的差异更为一致。因此,在戒断期间在乙醇诱导的运动敏化的获得阶段观察到的行为变异性伴随着差异性神经元可塑性。此外,在致敏和未致敏小鼠中检测到的FosB / DeltaFosB表达的不同模式似乎与停药期有关,而不是与长期吸毒有关。最后,退出期FosB / DeltaFosB表达的增加可以认为是由于功能和病理可塑性引起的。

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