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慢性脑源性神经营养因子耗竭对外侧杏仁核 GABA 能突触传递的影响。

Impact of Chronic BDNF Depletion on GABAergic Synaptic Transmission in the Lateral Amygdala.

机构信息

Institut für Physiologie, Otto-von-Guericke-Universität, D-39120 Magdeburg, Germany.

Center for Behavioral Brain Sciences, D-39106 Magdeburg, Germany.

出版信息

Int J Mol Sci. 2019 Sep 3;20(17):4310. doi: 10.3390/ijms20174310.

Abstract

Brain-derived neurotrophic factor (BDNF) has previously been shown to play an important role in glutamatergic synaptic plasticity in the amygdala, correlating with cued fear learning. While glutamatergic neurotransmission is facilitated by BDNF signaling in the amygdala, its mechanism of action at inhibitory synapses in this nucleus is far less understood. We therefore analyzed the impact of chronic BDNF depletion on GABA-mediated synaptic transmission in BDNF heterozygous knockout mice (BDNF). Analysis of miniature and evoked inhibitory postsynaptic currents (IPSCs) in the lateral amygdala (LA) revealed neither pre- nor postsynaptic differences in BDNF mice compared to wild-type littermates. In addition, long-term potentiation (LTP) of IPSCs was similar in both genotypes. In contrast, facilitation of spontaneous IPSCs (sIPSCs) by norepinephrine (NE) was significantly reduced in BDNF mice. These results argue against a generally impaired efficacy and plasticity at GABAergic synapses due to a chronic BDNF deficit. Importantly, the increase in GABAergic tone mediated by NE is reduced in BDNF mice. As release of NE is elevated during aversive behavioral states in the amygdala, effects of a chronic BDNF deficit on GABAergic inhibition may become evident in response to states of high arousal, leading to amygdala hyper-excitability and impaired amygdala function.

摘要

脑源性神经营养因子(BDNF)先前被证明在杏仁核的谷氨酸能突触可塑性中发挥重要作用,与提示性恐惧学习相关。虽然 BDNF 信号在杏仁核中促进谷氨酸能神经传递,但它在该核内抑制性突触中的作用机制知之甚少。因此,我们分析了慢性 BDNF 耗竭对 BDNF 杂合子敲除小鼠(BDNF)中 GABA 介导的突触传递的影响。在外侧杏仁核(LA)中分析微小和诱发的抑制性突触后电流(IPSCs),与野生型同窝仔相比,BDNF 小鼠中没有突触前或突触后差异。此外,两种基因型的 IPSC 长时程增强(LTP)相似。相比之下,BDNF 小鼠中去甲肾上腺素(NE)对自发 IPSC(sIPSCs)的易化作用明显降低。这些结果表明,由于慢性 BDNF 缺乏,GABA 能突触的功效和可塑性一般不会受损。重要的是,BDNF 小鼠中由 NE 介导的 GABA 能张力增加减少。由于在杏仁核的厌恶行为状态下,NE 的释放增加,因此慢性 BDNF 缺乏对 GABA 能抑制的影响可能在高唤醒状态下变得明显,导致杏仁核过度兴奋和杏仁核功能受损。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4db/6747405/ac3ee11d1979/ijms-20-04310-g001.jpg

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