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基底杏仁核中靶向胞周区域的中间神经元的不同输出特性。

Different output properties of perisomatic region-targeting interneurons in the basal amygdala.

作者信息

Barsy Boglárka, Szabó Gergely G, Andrási Tibor, Vikór Attila, Hájos Norbert

机构信息

'Lendület' Laboratory of Network Neurophysiology, Institute of Experimental Medicine, Hungarian Academy of Sciences, Budapest, H-1450, Hungary.

János Szentágothai School of Neurosciences, Semmelweis University, Budapest, Hungary.

出版信息

Eur J Neurosci. 2017 Feb;45(4):548-558. doi: 10.1111/ejn.13498. Epub 2017 Jan 21.

Abstract

The perisomatic region of principal neurons in cortical regions is innervated by three types of GABAergic interneuron, including parvalbumin-containing basket cells (PVBCs) and axo-axonic cells (AACs), as well as cholecystokinin and type 1 cannabinoid receptor-expressing basket cells (CCK/CB1BCs). These perisomatic inhibitory cell types can also be found in the basal nucleus of the amygdala, however, their output properties are largely unknown. Here, we performed whole-cell recordings in morphologically identified interneurons in slices prepared from transgenic mice, in which the GABAergic cells could be selectively targeted. Investigating the passive and active membrane properties of interneurons located within the basal amygdala revealed that the three interneuron types have distinct single-cell properties. For instance, the input resistance, spike rate, accommodation in discharge rate, or after-hyperpolarization width at the half maximal amplitude separated the three interneuron types. Furthermore, we performed paired recordings from interneurons and principal neurons to uncover the basic features of unitary inhibitory postsynaptic currents (uIPSCs). Although we found no difference in the magnitude of responses measured in the principal neurons, the uIPSCs originating from the distinct interneuron types differed in rise time, failure rate, latency, and short-term dynamics. Moreover, the asynchronous transmitter release induced by a train of action potentials was typical for the output synapses of CCK/CB1BCs. Our results suggest that, despite the similar uIPSC magnitudes originating from the three perisomatic inhibitory cell types, their distinct release properties together with the marked differences in their spiking characteristics may contribute to accomplish specific functions in amygdala network operation.

摘要

皮质区域中主要神经元的胞体周围区域由三种类型的γ-氨基丁酸能中间神经元支配,包括含小白蛋白的篮状细胞(PVBCs)和轴突-轴突细胞(AACs),以及表达胆囊收缩素和1型大麻素受体的篮状细胞(CCK/CB1BCs)。这些胞体周围抑制性细胞类型在杏仁核基底核中也能找到,然而,它们的输出特性在很大程度上尚不清楚。在这里,我们在从转基因小鼠制备的脑片中对形态学上已鉴定的中间神经元进行了全细胞记录,其中γ-氨基丁酸能细胞可以被选择性地靶向。研究位于杏仁核基底核内的中间神经元的被动和主动膜特性发现,这三种中间神经元类型具有不同的单细胞特性。例如,输入电阻、放电频率、放电频率适应性或半最大振幅处的超极化后宽度将这三种中间神经元类型区分开来。此外,我们对中间神经元和主要神经元进行了配对记录,以揭示单突触抑制性突触后电流(uIPSCs)的基本特征。尽管我们发现主要神经元中测量到的反应幅度没有差异,但源自不同中间神经元类型的uIPSCs在上升时间、失败率、潜伏期和短期动力学方面存在差异。此外,一串动作电位诱导的异步递质释放是CCK/CB1BCs输出突触的典型特征。我们的结果表明,尽管源自三种胞体周围抑制性细胞类型的uIPSC幅度相似,但它们不同的释放特性以及放电特征的显著差异可能有助于在杏仁核网络运作中完成特定功能。

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