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Cholinergic receptor activation supports persistent firing in layer III neurons in the medial entorhinal cortex

机译:胆碱能受体激活支持内侧内嗅皮层第三层神经元的持续放电

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摘要

Medial temporal lobe (MTL) areas are crucial for memory tasks such as spatial working memory and temporal association memory, which require an active maintenance of memory for a short period of time (a few hundred milliseconds to tens of seconds). Recent work has shown that the projection from layer III neurons in the medial entorhinal cortex (MEC) to hippocampal region CA1, the temporoammonic (TA) pathway, might be specially important for these memory tasks. In addition, lesions to the entorhinal cortex disrupt persistent firing in CA1 which is believed to support active maintenance of memory. Injection of cholinergic antagonists and group I mGlu receptor antagonists to the MEC impairs spatial working memory and temporal association memory. Consistent with this, we have shown that group I mGlu receptor activation supports persistent firing in principal cells of the MEC layer III in vitro (Yoshida et al., 2008). However, it still remains unknown whether cholinergic receptor activation also supports persistent firing in MEC layer III neurons. In this paper, we tested this in MEC layer III cells using both ruptured and perforated whole-cell recordings in vitro. We report that the majority of cells we recorded from in MEC layer III show persistent firing during perfusion of the cholinergic agonist carbachol (2 – 10 μM). In addition, repeated stimulation gradually suppressed persistent firing. We further discuss the possible role of persistent firing in memory in general.
机译:内侧颞叶(MTL)区域对于诸如空间工作记忆和时间关联记忆之类的记忆任务至关重要,这需要在短时间段(几百毫秒到数十秒)内主动维护记忆。最近的研究表明,从内侧内嗅皮层(MEC)的III层神经元向颞海域(TA)通路的海马区CA1的投射对于这些记忆任务可能特别重要。另外,内嗅皮层的损伤破坏了CA1的持续放电,这被认为可以支持记忆的主动维持。向MEC注射胆碱能拮抗剂和I类mGlu受体拮抗剂会损害空间工作记忆和时间联想记忆。与此相一致,我们已经表明,第I组mGlu受体的活化支持在体外MEC III层的主要细胞中持续激发(Yoshida等,2008)。然而,胆碱能受体激活是否也支持MEC III层神经元的持续放电仍是未知的。在本文中,我们在体外使用破裂和穿孔的全细胞记录在MEC III层细胞中对此进行了测试。我们报告说,我们在MEC第三层中记录的大多数细胞在灌注胆碱能激动剂卡巴胆碱(2 – 10μM)时显示持续放电。此外,反复刺激逐渐抑制了持续性射击。通常,我们将进一步讨论持久触发在内存中的可能作用。

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