首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Septal cholinergic neurons gate hippocampal output to entorhinal cortex via oriens lacunosum moleculare interneurons
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PNAS Plus: Septal cholinergic neurons gate hippocampal output to entorhinal cortex via oriens lacunosum moleculare interneurons

机译:PNAS Plus:隔垫胆碱能神经元通过oriens lacunosum分子间神经元将海马输出到内嗅皮层

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摘要

Neuromodulation of neural networks, whereby a selected circuit is regulated by a particular modulator, plays a critical role in learning and memory. Among neuromodulators, acetylcholine (ACh) plays a critical role in hippocampus-dependent memory and has been shown to modulate neuronal circuits in the hippocampus. However, it has remained unknown how ACh modulates hippocampal output. Here, using in vitro and in vivo approaches, we show that ACh, by activating oriens lacunosum moleculare (OLM) interneurons and therefore augmenting the negative-feedback regulation to the CA1 pyramidal neurons, suppresses the circuit from the hippocampal area CA1 to the deep-layer entorhinal cortex (EC). We also demonstrate, using mouse behavior studies, that the ablation of OLM interneurons specifically impairs hippocampus-dependent but not hippocampus-independent learning. These data suggest that ACh plays an important role in regulating hippocampal output to the EC by activating OLM interneurons, which is critical for the formation of hippocampus-dependent memory.
机译:神经网络的神经调节通过选定的调节器调节选定的电路,在学习和记忆中起着至关重要的作用。在神经调节剂中,乙酰胆碱(ACh)在海马依赖性记忆中起关键作用,并已被证明可调节海马神经元回路。然而,仍不清楚ACh如何调节海马输出。在这里,我们采用体外和体内方法,证明了乙酰胆碱酯酶通过激活猿猴分子中间神经元并因此增强了对CA1锥体神经元的负反馈调节,从而抑制了从海马区CA1到深层的回路。内嗅皮层(EC)。我们还使用小鼠行为研究证明,OLM interneurons的消融会特别损害海马依赖型学习,而不损害海马依赖型学习。这些数据表明,乙酰胆碱酯通过激活OLM中间神经元在调节海马向EC的输出中起重要作用,这对海马依赖型记忆的形成至关重要。

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