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Substance P excites GABAergic neurons in the mouse central amygdala through neurokinin 1 receptor activation

机译:P物质通过神经激肽1受体的激活激发小鼠中央杏仁核中的GABA能神经元

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摘要

Substance P (SP) is implicated in stress regulation and affective and anxiety-related behavior. Particularly high expression has been found in the main output region of the amygdala complex, the central amygdala (CE). Here we investigated the cellular mechanisms of SP in CE in vitro, taking advantage of glutamic acid decarboxylase-green fluorescent protein (GAD67-GFP) knockin mice that yield a reliable labeling of GABAergic neurons, which comprise 95% of the neuronal population in the lateral section of CE (CEl). In GFP-positive neurons within CEl, SP caused a membrane depolarization and increase in input resistance, associated with an increase in action potential firing frequency. Under voltage-clamp conditions, the SP-specific membrane current reversed at −101.5 ± 2.8 mV and displayed inwardly rectifying properties indicative of a membrane K+ conductance. Moreover, SP responses were blocked by the neurokinin type 1 receptor (NK1R) antagonist L-822429 and mimicked by the NK1R agonist [Sar9,Met(O2)11]-SP. Immunofluorescence staining confirmed localization of NK1R in GFP-positive neurons in CEl, predominantly in PKCδ-negative neurons (80%) and in few PKCδ-positive neurons (17%). Differences in SP responses were not observed between the major types of CEl neurons (late firing, regular spiking, low-threshold bursting). In addition, SP increased the frequency and amplitude of GABAergic synaptic events in CEl neurons depending on upstream spike activity. These data indicate a NK1R-mediated increase in excitability and GABAergic activity in CEl neurons, which seems to mostly involve the PKCδ-negative subpopulation. This influence can be assumed to increase reciprocal interactions between CElon and CEloff pathways, thereby boosting the medial CE (CEm) output pathway and contributing to the anxiogenic-like action of SP in the amygdala.
机译:P(SP)物质与压力调节以及情感和焦虑相关行为有关。在杏仁核复合体的主要输出区域,中央杏仁核(CE)中发现特别高的表达。在这里,我们利用谷氨酸脱羧酶绿色荧光蛋白(GAD67-GFP)敲入小鼠,研究了SP在CE中的细胞机制,该小鼠产生可靠标记GABA能神经元,该神经元占侧脑神经元总数的95% CE(CEl)部分。在CE1内的GFP阳性神经元中,SP引起膜去极化和输入电阻的增加,这与动作电位激发频率的增加有关。在电压钳制条件下,SP特定的膜电流在-101.5±2.8 mV处反转,并显示出向内的整流特性,表明膜的K + 电导。此外,SP反应被神经激肽1型受体(NK1R)拮抗剂L-822429阻断,并被NK1R激动剂[Sar 9 ,Met(O2) 11 ]-模仿SP。免疫荧光染色证实NK1R在CE1的GFP阳性神经元中定位,主要在PKCδ阴性神经元(80%)和少数PKCδ阳性神经元(17%)中。在主要类型的CE1神经元之间没有观察到SP反应的差异(迟发,定期发作,低阈值爆发)。另外,取决于上游刺突活性,SP增加了CE1神经元中GABA能突触事件的频率和幅度。这些数据表明NK1R介导的CE1神经元兴奋性和GABA能活性增加,这似乎主要涉及PKCδ阴性亚群。可以假定这种影响会增加CElon和CEloff途径之间的相互作用,从而增强内侧CE(CEm)的输出途径,并有助于杏仁核中SP的类似血管生成作用。

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