Neuroscience Axis, CRCHUQ-CHUL, Quebec City, PQ, Canada; Department of Biochemistry, Microbiology, and Bioinformatics, Université Laval, Quebec City, PQ, Canada.
Krembil Centre for Neuroinformatic, University of Toronto, Toronto, ON, Canada.
Cell Rep. 2024 Apr 23;43(4):114115. doi: 10.1016/j.celrep.2024.114115. Epub 2024 Apr 11.
In the CA1 hippocampus, vasoactive intestinal polypeptide-expressing interneurons (VIP-INs) play a prominent role in disinhibitory circuit motifs. However, the specific behavioral conditions that lead to circuit disinhibition remain uncertain. To investigate the behavioral relevance of VIP-IN activity, we employed wireless technologies allowing us to monitor and manipulate their function in freely behaving mice. Our findings reveal that, during spatial exploration in new environments, VIP-INs in the CA1 hippocampal region become highly active, facilitating the rapid encoding of novel spatial information. Remarkably, both VIP-INs and pyramidal neurons (PNs) exhibit increased activity when encountering novel changes in the environment, including context- and object-related alterations. Concurrently, somatostatin- and parvalbumin-expressing inhibitory populations show an inverse relationship with VIP-IN and PN activity, revealing circuit disinhibition that occurs on a timescale of seconds. Thus, VIP-IN-mediated disinhibition may constitute a crucial element in the rapid encoding of novelty and the acquisition of recognition memory.
在 CA1 海马体中,血管活性肠肽(VIP)表达中间神经元(VIP-INs)在去抑制性回路中发挥重要作用。然而,导致回路去抑制的特定行为条件尚不确定。为了研究 VIP-IN 活性的行为相关性,我们采用了无线技术,使我们能够在自由活动的小鼠中监测和操纵其功能。我们的研究结果表明,在新环境中进行空间探索时,CA1 海马区的 VIP-IN 会变得非常活跃,从而促进对新空间信息的快速编码。值得注意的是,当遇到环境中的新变化时,包括上下文和物体相关的变化,VIP-IN 和 pyramidal neurons (PNs) 的活动都会增加。同时,表达 somatostatin 和 parvalbumin 的抑制性神经元群与 VIP-IN 和 PN 活动呈相反关系,揭示了在秒级时间尺度上发生的回路去抑制。因此,VIP-IN 介导的去抑制可能是快速编码新奇和获得识别记忆的关键因素。