Boix-Trelis Núria, Vale-Martínez Anna, Guillazo-Blanch Gemma, Costa-Miserachs David, Martí-Nicolovius Margarita
Departament de Psicobiologia i Metodologia de les Ciències de la Salut Institut de Neurociències, Universitat Autònoma de Barcelona, Barcelona 08193, Spain.
Learn Mem. 2006 Nov-Dec;13(6):783-93. doi: 10.1101/lm.305306. Epub 2006 Nov 13.
Experiment 1 examined the effects of electrical stimulation of nucleus basalis magnocellularis (NBM) on a relational odor-association task--the social transmission of food preference (STFP). Rats were stimulated unilaterally in the NBM for 20 min (100 microA, 1 Hz) immediately before the social training. They were tested on their ability to remember preference for the trained food either immediately or following a 24-h delay. Stimulation of NBM improved retention regardless of delay, and additional behavioral measures (social interaction, motor activity, or exploration) did not account for such effects. Experiment 2 investigated brain regions activated after NBM electrical stimulation by examining the induction of c-Fos. This treatment led to bilateral increased c-Fos expression in prefrontal regions, such as orbitofrontal, prelimbic, and infralimbic cortices, and some hippocampal subregions (dorsal CA and ventral dentate gyrus). In contrast, no differences between groups in c-Fos expression were found in basolateral amygdala, dorsal dentate gyrus, ventral CA, or ventral subiculum. Present findings indicate that pretraining NBM electrical stimulation facilitates the acquisition of STFP, supporting a role of NBM in the early stages of memory formation, and suggest that the treatment might cause such effects by inducing neural changes, related to transcription factors such as c-Fos, in the prefrontal cortex or the hippocampal formation.
实验1研究了对大细胞基底核(NBM)进行电刺激对一种关系性气味关联任务——食物偏好的社会传递(STFP)的影响。在社会训练前,立即对大鼠的NBM进行单侧刺激20分钟(100微安,1赫兹)。在训练后立即或延迟24小时后,测试它们对训练食物偏好的记忆能力。无论是否有延迟,对NBM的刺激都能改善记忆保持,并且其他行为指标(社交互动、运动活动或探索)无法解释这种效应。实验2通过检测c-Fos的诱导情况,研究了NBM电刺激后激活的脑区。这种处理导致前额叶区域,如眶额皮质、前边缘皮质和边缘下皮质,以及一些海马亚区(背侧CA和腹侧齿状回)双侧c-Fos表达增加。相比之下,在基底外侧杏仁核、背侧齿状回、腹侧CA或腹侧下托中,未发现各组之间c-Fos表达存在差异。目前的研究结果表明,训练前对NBM进行电刺激有助于STFP的获得,支持了NBM在记忆形成早期阶段的作用,并表明这种处理可能通过在前额叶皮质或海马结构中诱导与c-Fos等转录因子相关的神经变化而产生这种效应。