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在与进食相关的动机行为过程中,上行唤醒系统组胺能神经元的唤醒及Fos表达差异

Arousal and differential Fos expression in histaminergic neurons of the ascending arousal system during a feeding-related motivated behaviour.

作者信息

Valdés J L, Farías P, Ocampo-Garcés A, Cortés N, Serón-Ferré M, Torrealba F

机构信息

Programa de Doctorado en Ciencias Biomédicas, ICBM, Universidad de Chile, Santiago, Chile.

出版信息

Eur J Neurosci. 2005 Apr;21(7):1931-42. doi: 10.1111/j.1460-9568.2005.04013.x.

DOI:10.1111/j.1460-9568.2005.04013.x
PMID:15869486
Abstract

Arousal depends on the concerted activity of the ascending arousal system (AAS) but specific stimuli may primarily activate some nuclei of this system. Motivated behaviours are characterized by behavioural arousal, although it is not known which AAS nuclei are active during a motivated behaviour. To address this issue, rats were rendered motivated for food by fasting them for 1 day and then were enticed with food that they could not obtain for varying periods of time. We studied the level of arousal by polysomnography or radiotelemetry, and Fos-ir in the AAS, during food enticing. We found a strong arousal and an early increase in Fos-ir in the histaminergic neurons from the tuberomammillary nucleus, after 30 min of enticing, followed by increased Fos-ir in the whole AAS if food enticing was prolonged to 1 or 2 hours. In contrast, food presentation to non-motivated rats did not increase arousal or Fos-ir in the tuberomammillary nucleus. As opposed to the active arousal of the motivated rats, passive arousal induced by sensory stimulation was associated with increased Fos-ir in the locus coeruleus and the orexin neurons, but not with increased Fos-ir in the tuberomammillary nucleus or in the other nuclei of the AAS. We conclude that the arousal during feeding-related motivated behaviour is associated primarily with the activation of the tuberomammillary nucleus, while the other arousal-related nuclei become active later on.

摘要

觉醒依赖于上行觉醒系统(AAS)的协同活动,但特定刺激可能主要激活该系统的某些核团。动机行为的特征是行为觉醒,尽管尚不清楚在动机行为期间哪些AAS核团是活跃的。为了解决这个问题,通过让大鼠禁食1天使其产生对食物的动机,然后用它们在不同时间段内无法获得的食物来引诱它们。在食物引诱期间,我们通过多导睡眠图或无线电遥测研究了觉醒水平以及AAS中的Fos免疫反应(Fos-ir)。我们发现,在引诱30分钟后,来自结节乳头核的组胺能神经元出现强烈觉醒和Fos-ir早期增加,如果食物引诱延长至1或2小时,则整个AAS中的Fos-ir会增加。相比之下,向无动机的大鼠呈现食物不会增加结节乳头核中的觉醒或Fos-ir。与动机大鼠的主动觉醒相反,感觉刺激诱导的被动觉醒与蓝斑和食欲素神经元中Fos-ir的增加有关,但与结节乳头核或AAS的其他核团中Fos-ir的增加无关。我们得出结论,与进食相关的动机行为期间的觉醒主要与结节乳头核的激活有关,而其他与觉醒相关的核团随后才会变得活跃。

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