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Activation of Basolateral Amygdala in Juvenile C57BL/6J Mice During Social Approach Behavior

机译:社会交往行为期间少年C57BL / 6J小鼠基底外侧杏仁核的激活。

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摘要

There is a strong need to better understand the neurobiology of juvenile sociability (tendency to seek social interaction), a phenotype of central relevance to autism spectrum disorders (ASD). Although numerous genetic mouse models of ASD showing reduced sociability have been reported, and certain brain regions, such as the amygdala, have been implicated in sociability, there has been little emphasis on delineating brain structures and circuits activated during social interactions in the critical juvenile period of the mouse strain that serves as the most common genetic background for these models—the highly sociable C57BL/6J (B6) strain. We measured expression of the immediate early genes Fos and Egr-1 to map activation of brain regions following the Social Approach Test (SAT) in juvenile male B6 mice. We hypothesized that juvenile B6 mice would show activation of the amygdala during social interactions. The basoloateral amygdala (BLA) was activated by social exposure in highly sociable, 4-week-old B6 mice. In light of these data, and the many lines of evidence indicating alteration of amygdala circuits in human ASD, future studies are warranted to assess structural and functional alterations in the BLA, particularly at BLA synapses, in various mouse models of ASD.
机译:迫切需要更好地了解青少年社交能力(寻求社交互动的倾向)的神经生物学,这是与自闭症谱系障碍(ASD)中心相关的表型。尽管已经报道了许多ASD遗传小鼠模型,它们显示出社交能力降低,并且某些大脑区域(如杏仁核)与社交能力有关,但在关键的青少年时期,很少强调描绘社交互动过程中激活的大脑结构和回路作为这些模型最常见的遗传背景的小鼠品系,即高度社交性的C57BL / 6J(B6)品系。我们测量了早期早期基因Fos和Egr-1的表达,以在社交方法测试(SAT)中绘制了少年B6雄性小鼠大脑区域的激活图。我们假设少年B6小鼠在社交互动中会显示杏仁核的激活。在社交能力强的4周龄B6小鼠中,社交暴露激活了基底侧杏仁核(BLA)。根据这些数据,以及许多证据表明人类ASD中杏仁核回路的改变,有必要进行进一步的研究来评估ASD的各种小鼠模型中BLA的结构和功能的改变,特别是BLA突触的改变。

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