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Neurogliaform cells and other interneurons of stratum lacunosum-moleculare gate entorhinal–hippocampal dialogue

机译:星形胶质细胞和其他层间神经元层状腔-海马对话

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摘要

The stratum lacunosum-moleculare of the hippocampus is an area of integration that receives inputs from extrinsic excitatory fibres including those from the entorhinal cortex, and is under the control of several neuromodulators. A critical aspect is the presence in this hippocampal layer of specific interneurons that are likely to influence the strength and the temporal structure of entorhinal–CA1 hippocampal dynamics. I review here recent data on the physiological role of these interneurons. Special focus is devoted to one interneuron type, the so-called neurogliaform cell, because recent studies have defined its unusual mode of cell-to-cell communication. Neurogliaform cells mediate feedforward inhibition of CA1 pyramidal cells, form a network of cells connected via chemical and electrical synapses, and evoke slow inhibitory synaptic currents mediated by GABAA and GABAB receptors. The modulation of entorhinal input by neurogliaform cells and their contribution to network theta rhythm are also discussed. I hope that novel information on neurogliaform cells will contribute to the ever-growing appreciation of GABAergic cell type diversity, and will inspire neuroscientists interested not only in synaptic physiology but also in the brain's spatial representation system.
机译:海马的腔纹层是一个整合区域,接受来自外在的兴奋性纤维的输入,包括来自内嗅皮层的兴奋性纤维的输入,并且处于几种神经调节剂的控制之下。一个关键方面是海马层中存在特定的中间神经元,它们可能会影响内啡肽–CA1海马动力学的强度和时间结构。我在这里回顾了有关这些中间神经元的生理作用的最新数据。特别关注的是一种中间神经元类型,即所谓的神经胶质细胞,因为最近的研究已经定义了其异常的细胞间通讯模式。神经胶质细胞介导CA1锥体细胞的前馈抑制,形成通过化学和电突触连接的细胞网络,并引起由GABAA和GABAB受体介导的缓慢的抑制性突触电流。还讨论了神经胶质细胞对内啡肽输入的调节及其对网络θ节律的贡献。我希望有关神经胶质细胞的新信息将有助于不断增长的对GABA能细胞类型多样性的认识,并将激发不仅对突触生理学而且对大脑空间表示系统感兴趣的神经科学家。

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