Department of Physiology, College of Basic Medical Sciences, Army Medical University, Chongqing, 400038, China.
Department of Foreign Language, College of Basic Medical Sciences, Army Medical University, Chongqing, 400038, China.
Neurosci Bull. 2021 Aug;37(8):1147-1159. doi: 10.1007/s12264-021-00700-0. Epub 2021 May 15.
While the hippocampus has been implicated in supporting the association among time-separated events, the underlying cellular mechanisms have not been fully clarified. Here, we combined in vivo multi-channel recording and optogenetics to investigate the activity of hippocampal interneurons in freely-moving mice performing a trace eyeblink conditioning (tEBC) task. We found that the hippocampal interneurons exhibited conditioned stimulus (CS)-evoked sustained activity, which predicted the performance of conditioned eyeblink responses (CRs) in the early acquisition of the tEBC. Consistent with this, greater proportions of hippocampal pyramidal cells showed CS-evoked decreased activity in the early acquisition of the tEBC. Moreover, optogenetic suppression of the sustained activity in hippocampal interneurons severely impaired acquisition of the tEBC. In contrast, suppression of the sustained activity of hippocampal interneurons had no effect on the performance of well-learned CRs. Our findings highlight the role of hippocampal interneurons in the tEBC, and point to a potential cellular mechanism subserving associative learning.
虽然海马体被认为支持时间分离事件之间的关联,但潜在的细胞机制尚未完全阐明。在这里,我们结合在体多通道记录和光遗传学方法,研究了自由移动的小鼠在进行痕迹性眨眼条件反射(tEBC)任务时海马中间神经元的活动。我们发现,海马中间神经元表现出条件刺激(CS)诱发的持续活动,这种活动预测了 tEBC 早期条件性眨眼反应(CR)的表现。与此一致的是,在 tEBC 的早期获得阶段,更多比例的海马锥体神经元表现出 CS 诱发的活性降低。此外,光遗传学抑制海马中间神经元的持续活动严重损害了 tEBC 的获得。相比之下,抑制海马中间神经元的持续活动对已经熟练掌握的 CR 表现没有影响。我们的发现强调了海马中间神经元在 tEBC 中的作用,并指出了潜在的支持联想学习的细胞机制。