Psychiatry and Behavioral Neuroscience, University of Cincinnati, Cincinnati, OH, USA.
Biomedical Sciences, Colorado State University, Fort Collins, CO, USA.
Brain Struct Funct. 2019 Jan;224(1):73-97. doi: 10.1007/s00429-018-1762-6. Epub 2018 Sep 29.
The medial prefrontal cortex is critical for contextual appraisal, executive function, and goal-directed behavior. Additionally, the infralimbic (IL) subregion of the prefrontal cortex has been implicated in stress responding, mood, and fear memory. However, the specific circuit mechanisms that mediate these effects are largely unknown. To date, IL output to the limbic forebrain has been examined largely qualitatively or within a restricted number of sites. To quantify IL presynaptic input to structures throughout the forebrain, we utilized a lentiviral construct expressing synaptophysin-mCherry. Thus, allowing quantification of IL efferents that are specifically synaptic, as opposed to fibers of passage. Additionally, this approach permitted the determination of IL innervation on a sub-structural level within the multiple heterogeneous limbic nuclei. To examine the functional output of the IL, optogenetic activation of IL projections was followed by quantification of neuronal activation throughout the limbic forebrain via fos-related antigen (Fra). Quantification of synaptophysin-mCherry indicated that the IL provides robust synaptic input to a number of regions within the thalamus, hypothalamus, amygdala, and bed nucleus of the stria terminalis, with limited input to the hippocampus and nucleus accumbens. Furthermore, there was high concordance between structural connectivity and functional activation. Interestingly, some regions receiving substantial synaptic input did not exhibit significant increases in Fra-immunoreactivity. Collectively, these studies represent a step toward a comprehensive and quantitative analysis of output circuits. This large-scale efferent quantification or 'projectome' also opens the door for data-driven analyses of the downstream synaptic mechanisms that mediate the integrative aspects of cortico-limbic interactions.
内侧前额叶皮层对于情境评价、执行功能和目标导向行为至关重要。此外,前额叶皮层的下边缘(IL)区域与应激反应、情绪和恐惧记忆有关。然而,介导这些效应的具体电路机制在很大程度上仍是未知的。迄今为止,IL 对边缘前脑的输出主要是定性的,或者在少数几个部位进行检查。为了定量 IL 对整个前脑结构的突触前输入,我们使用了表达突触素-mCherry 的慢病毒构建体。因此,可以量化 IL 传出物的特异性突触,而不是通过通过纤维。此外,这种方法允许在多个异质边缘核内的亚结构水平上确定 IL 支配。为了研究 IL 的功能输出,我们通过 fos 相关抗原(Fra)来量化边缘前脑内的神经元激活,来追踪 IL 投射的光遗传激活。突触素-mCherry 的定量表明,IL 为丘脑、下丘脑、杏仁核和终纹床核内的许多区域提供了强大的突触输入,而对海马体和伏隔核的输入有限。此外,结构连接和功能激活之间具有高度一致性。有趣的是,一些接收大量突触输入的区域没有表现出 Fra 免疫反应的显著增加。总的来说,这些研究代表了朝着全面和定量分析输出电路迈出的一步。这种大规模的传出定量或“投射组”也为皮质边缘相互作用的整合方面介导的下游突触机制的数据分析开辟了道路。