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大鼠新皮质中一种稀疏棘状中间神经元引发的单轴突快速抑制性突触后电位

Single axon fast inhibitory postsynaptic potentials elicited by a sparsely spiny interneuron in rat neocortex.

作者信息

Deuchars J, Thomson A M

机构信息

Department of Physiology, Royal Free Hospital School of Medicine, London, U.K.

出版信息

Neuroscience. 1995 Apr;65(4):935-42. doi: 10.1016/0306-4522(95)00020-j.

DOI:10.1016/0306-4522(95)00020-j
PMID:7617170
Abstract

Many of the different morphological types of interneurons in mammalian neocortex are presumed to be inhibitory, but to date, conclusive functional data have been lacking. Using paired intracellular recordings in slices of adult rat somatosensory cortex, we present a sparsely spiny, burst firing interneuron that elicits in a simultaneously recorded pyramid a fast inhibitory postsynaptic potential, reversing at -78 mV. Neither inhibitory postsynaptic potential time course, nor paired pulse depression (inter-spike interval 15-120 ms), was affected by addition of the GABAB antagonist/partial agonist 2-OH-Saclofen (250 microM), but increasing extracellular [Ca2+] enhanced inhibitory postsynaptic potential amplitude at low firing rates and increased paired pulse depression at higher rates. Light microscopic examination of the biocytin-filled neurons revealed the presynaptic cell to be a sparsely spiny interneuron and the postsynaptic to be a small pyramidal neuron, both in layer II. Ultrastructural examination of 16 terminals of the presynaptic interneuron revealed that they formed symmetric contacts with unlabelled neurons, four with neuronal somata, 10 with dendritic shafts and two with spine shafts. This, therefore, is the first report of the properties of a single axon inhibitory postsynaptic potential in neocortex resulting from action potentials in an electro-physiologically and morphologically identified interneuron. We propose that at least some of the sparsely spiny, burst firing interneurons inhibit pyramidal neurons via GABAA receptors.

摘要

哺乳动物新皮层中许多不同形态类型的中间神经元被认为具有抑制作用,但迄今为止,尚无确凿的功能数据。我们利用成年大鼠体感皮层切片中的细胞内配对记录,发现了一种稀疏棘状、爆发式放电的中间神经元,它在同时记录的锥体神经元中引发快速抑制性突触后电位,反转电位为-78 mV。添加GABAB拮抗剂/部分激动剂2-羟基-氯苯氨丁酸(250 microM)对抑制性突触后电位的时程和配对脉冲抑制(峰间间隔15 - 120 ms)均无影响,但增加细胞外[Ca2+]浓度会在低放电频率时增强抑制性突触后电位的幅度,并在较高频率时增加配对脉冲抑制。对用生物胞素填充的神经元进行光学显微镜检查发现,突触前细胞是一个稀疏棘状的中间神经元,突触后细胞是一个小锥体神经元,二者均位于第二层。对突触前中间神经元的16个终末进行超微结构检查发现,它们与未标记的神经元形成对称突触,其中4个与神经元胞体、10个与树突干以及2个与棘干形成突触。因此,这是关于新皮层中由电生理和形态学鉴定的中间神经元动作电位产生的单轴突抑制性突触后电位特性的首次报道。我们提出,至少一些稀疏棘状、爆发式放电的中间神经元通过GABAA受体抑制锥体神经元。

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