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Medial septal cholinergic mediation of hippocampal theta rhythm induced by vagal nerve stimulation

机译:迷走神经刺激诱导的海马湿润的内侧间隔胆碱能介面

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摘要

BACKGROUND:Electrical vagal nerve stimulation (VNS) has been used for years to treat patients with drug-resistant epilepsy. This technique also remains under investigation as a specific treatment of patients with Alzheimer's disease. Recently we discovered that VNS induced hippocampal formation (HPC) type II theta rhythm, which is involved in memory consolidation. In the present study, we have extended our previous observation and addressed the neuronal substrate and pharmacological profile of HPC type II theta rhythm induced by VNS in anesthetized rats. METHODS:Male Wistar rats were implanted with a VNS cuff electrode around the left vagus nerve, a tungsten microelectrode for recording the HPC field activity, and a medial septal (MS) cannula for the injection of a local anesthetic, procaine, and muscarinic agents. A direct, brief effect of VNS on the HPC field potential was evaluated before and after medial-septal drug injection. RESULTS:Medial septal injection of local anesthetic, procaine, reversibly abolished VNS-induced HPC theta rhythm. With the use of cholinergic muscarinic agonist and antagonists, we demonstrated that medial septal M1 receptors are involved in the mediation of the VNS effect on HPC theta field potential. CONCLUSION:The MS cholinergic M1 receptor mechanism integrates not only central inputs from the brainstem synchronizing pathway, which underlies the production of HPC type II theta rhythm, but also the input from the vagal afferents in the brain stem.
机译:背景:电动迷走神经刺激(VNS)已被使用多年以治疗耐药性癫痫患者。该技术还仍然是对阿尔茨海默病患者的特异性治疗患者的调查。最近,我们发现VNS诱导的海马形成(HPC)II型θ节奏,这参与了内存整合。在本研究中,我们已经扩展了我们先前的观察结果,并解决了在麻醉大鼠中VNS诱导的HPC II型θ节奏的神经元基质和药理学谱。方法:将雄性Wistar大鼠植入左迷走神经周围的VNS袖带电极,用于记录HPC现场活性的钨微电极,以及用于注射局部麻醉剂,普鲁卡因和肌肉蛋白剂的内侧隔膜(MS)套管。在内侧缓和药物注射液之前和之后,评估了VNS对HPC现场电位的直接的。结果:内侧隔膜注射局部麻醉,普鲁卡因,可逆废除VNS诱导的HPCθthta节奏。随着胆碱能毒蕈碱激动剂和拮抗剂的使用,我们证明了内侧隔膜M1受体参与了VNS对HPCθ场电位的影响。结论:MS Cholinergic M1受体机制不仅整合了来自脑干同步途径的中央输入,其基础是HPC II型θ节奏的产生,也是脑茎中的凹陷引起的输入。

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