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A functional glutamatergic neurone network in the medial septum and diagonal band area.

机译:内侧间隔和对角带区域中的功能性谷氨酸能神经元网络。

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The medial septum and diagonal band complex (MS/DB) is important for learning and memory and is known to contain cholinergic and GABAergic neurones. Glutamatergic neurones have also been recently described in this area but their function remains unknown. Here we show that local glutamatergic neurones can be activated using 4-aminopyridine (4-AP) and the GABA(A) receptor antagonist bicuculline in regular MS/DB slices, or mini-MS/DB slices. The spontaneous glutamatergic responses were mediated by AMPA receptors and, to a lesser extend, NMDA receptors, and were characterized by large, sometimes repetitive activity that elicited bursts of action potentials postsynaptically. Similar repetitive AMPA receptor-mediated bursts were generated by glutamatergic neurone activation within the MS/DB in disinhibited organotypic MS/DB slices, suggesting that the glutamatergic responses did not originate from extrinsic glutamatergic synapses. It is interesting that glutamatergic neurones were part of a synchronously active network as large repetitive AMPA receptor-mediated bursts were generated concomitantly with extracellular field potentials in intact half-septum preparations in vitro. Glutamatergic neurones appeared important to MS/DB activation as strong glutamatergic responses were present in electrophysiologically identified putative cholinergic, GABAergic and glutamatergic neurones. In agreement with this, we found immunohistochemical evidence that vesicular glutamate-2 (VGLUT2)-positive puncta were in proximity to choline acetyltransferase (ChAT)-, glutamic acid decarboxylase 67 (GAD67)- and VGLUT2-positive neurones. Finally, MS/DB glutamatergic neurones could be activated under more physiological conditions as a cholinergic agonist was found to elicit rhythmic AMPA receptor-mediated EPSPs at a theta relevant frequency of 6-10 Hz. We propose that glutamatergic neurones within the MS/DB can excite cholinergic and GABAergic neurones, and that they are part of a connected excitatory network, which upon appropriate activation, may contribute to rhythm generation.
机译:内侧中隔和对角带复合物(MS / DB)对于学习和记忆很重要,并且已知含有胆碱能和GABA能神经元。谷氨酸能神经元最近也已在该领域描述,但其功能仍然未知。在这里,我们显示可以在常规MS / DB切片或mini-MS / DB切片中使用4-氨基吡啶(4-AP)和GABA(A)受体拮抗剂双小分子激活局部谷氨酸能神经元。自发性谷氨酸能反应是由AMPA受体介导的,在较小程度上是由NMDA受体介导的,其特征是具有较大的,有时是重复的活性,可引起突触后动作电位的爆发。类似的重复AMPA受体介导的猝发是由MS / DB内抑制的器官型MS / DB切片中的谷氨酸能神经元激活产生的,表明该谷氨酸能反应并非源于外源性谷氨酸能突触。有趣的是,谷氨酸能神经元是同步活跃网络的一部分,因为在体外完整半隔膜制剂中伴随着大的重复AMPA受体介导的爆发与细胞外场电位同时产生。谷氨酸能神经元似乎对MS / DB激活很重要,因为在电生理学鉴定的假定胆碱能,GABA能和谷氨酸能神经元中存在强烈的谷氨酸能反应。与此相符,我们发现免疫组织化学证据表明囊泡谷氨酸2(VGLUT2)阳性点与胆碱乙酰转移酶(ChAT)-,谷氨酸脱羧酶67(GAD67)和VGLUT2阳性神经元接近。最后,MS / DB谷氨酸能神经元可以在更多的生理条件下被激活,因为发现胆碱能激动剂可以在6-10 Hz的theta相关频率下引发有节奏的AMPA受体介导的EPSPs。我们建议MS / DB中的谷氨酸能神经元可以激发胆碱能和GABA能神经元,并且它们是连接的兴奋性网络的一部分,在适当激活后,它们可能有助于节律的产生。

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