首页> 外文期刊>Behavioural Brain Research: An International Journal >c-Fos expression increase in NADPH-diaphorase positive neurons after exposure to a live cat.
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c-Fos expression increase in NADPH-diaphorase positive neurons after exposure to a live cat.

机译:暴露于活猫后,NADPH-黄递酶阳性神经元中c-Fos表达增加。

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The present study investigated if NOS positive neurons localized in regions related to defensive reactions are activated after exposure to an innate fear stimulus (a live cat). Male Wistar rats were exposed to a live or a toy cat for 10 min and 2h later had their brains removed and processed for c-Fos immunohistochemistry (a marker of neuronal functional activation) and NADPH-diaphorase (NADPH-d; used to detect the presence of NOS neurons) histochemistry. Cat exposure induced a small (11%) to moderate (50%) significant increase in the percentage of double-stained cells (c-Fos+NADPH-d positive neurons) in the anteromedial bed nucleus of stria terminalis (BSTMA), medial amygdala (MeA), parvocellular paraventricular (pPVN), lateral (LH) and dorsal premammillary (PMd) hypothalamic nuclei, dorsolateral periaqueductal grey (dlPAG) and dorsal raphe nucleus (DRN). This increase was attenuated in the PMd, DRN and dlPAG by i.c.v. injection of AP7 (5 nmol/2 microl), an NMDA receptor antagonist. The drug increased the percentage of time the rats remained close to the cat in the observation box. The results suggest that exposure to a live predator activates neurons containing NOS in brain areas related to defensive reactions. They also indicate that this effect probably involves activation of NMDA glutamate receptors.
机译:本研究调查了暴露于先天性恐惧刺激(一只活猫)后是否激活了与防御反应相关区域中的NOS阳性神经元。将雄性Wistar大鼠暴露于一只活猫或一只玩具猫中10分钟,然后2小时后,将其大脑移开并进行c-Fos免疫组织化学(神经元功能激活的标志物)和NADPH-黄递酶(NADPH-d;用于检测神经纤维蛋白原)的处理。 NOS神经元的存在)组织化学。猫的暴露导致杏仁核内侧纹状床前核(BSTMA)的双染细胞(c-Fos + NADPH-d阳性神经元)的百分比小幅增加(11%)至中度(50%) (MeA),小细胞室旁室(pPVN),外侧(LH)和背侧乳腺前(PMd)下丘脑核,背外侧腹周导水管灰色(dlPAG)和背侧phe核(DRN)。 i.c.v减弱了PMd,DRN和dlPAG中的这种增加。注射NMDA受体拮抗剂AP7(5 nmol / 2 microl)。该药物增加了大鼠在观察箱中保持靠近猫的时间百分比。结果表明,暴露于活的捕食者会激活与防御反应有关的大脑区域中含有NOS的神经元。他们还表明,这种作用可能涉及NMDA谷氨酸受体的激活。

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