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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Involvement of BDNF signaling transmission from basolateral amygdala to infralimbic prefrontal cortex in conditioned taste aversion extinction
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Involvement of BDNF signaling transmission from basolateral amygdala to infralimbic prefrontal cortex in conditioned taste aversion extinction

机译:BDNF信号传导从基底外侧杏仁核到边缘性前额叶皮层在条件性厌恶绝种中的参与

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摘要

Brain-derived neurotrophic factor (BDNF) and its receptor, tropomyosin-related kinase receptor B (TrkB), play a critical role in memory extinction. However, the detailed role of BDNF in memory extinction on the basis of neural circuit has not been fully understood. Here, we aim to investigate the role of BDNF signaling circuit in mediating conditioned taste aversion (CTA) memory extinction of the rats. We found region-specific changes in BDNF gene expression during CTA extinction. CTA extinction led to increased BDNF gene expression in the basolateral amygdala (BLA) and infralimbic prefrontal cortex (IL) but not in the central amygdaloid nucleus (CeA) and hippocampus (HIP). Moreover, blocking BDNF signaling or exogenous microinjection of BDNF into the BLA or IL could disrupt or enhance CTA extinction, which suggested that BDNF signaling in the BLA and IL is necessary and sufficient for CTA extinction. Interestingly, we found that microinjection of BDNF-neutralizing antibody into the BLA could abolish the extinction training-induced BDNF mRNA level increase in the IL, but not vice versa, demonstrating that BDNF signaling is transmitted from the BLA to IL during extinction. Finally, the accelerated extinction learning by infusion of exogenous BDNF in the BLA could also be blocked by IL infusion of BDNF-neutralizing antibody rather than vice versa, indicating that the IL, but not BLA, is the primary action site of BDNF in CTA extinction. Together, these data suggest that BLA-IL circuit regulates CTA memory extinction by identifying BDNF as a key regulator.
机译:脑源性神经营养因子(BDNF)及其受体,原肌球蛋白相关激酶受体B(TrkB)在记忆消失中起关键作用。然而,BDNF在基于神经回路的记忆消失中的详细作用还没有被完全理解。在这里,我们旨在调查BDNF信号传导电路在介导大鼠的条件性味觉厌恶(CTA)记忆消退中的作用。我们发现在CTA灭绝过程中BDNF基因表达的区域特定变化。 CTA灭绝导致基底外侧杏仁核(BLA)和下肢前额叶皮层(IL)中的BDNF基因表达增加,但在中央杏仁核(CeA)和海马(HIP)中却没有。此外,阻断BDNF信号传导或将BDNF外源显微注射到BLA或IL中可能破坏或增强CTA的灭绝,这表明BLA和IL中的BDNF信号传导对于CTA灭绝是必要和充分的。有趣的是,我们发现向BLA中微量注射BDNF中和抗体可以消除灭绝训练诱导的IL中BDNF mRNA水平的升高,但反之则不然,这表明灭绝过程中BDNF信号从BLA传递至IL。最后,通过IL注入BDNF中和抗体而不是反之,也可以通过向BLA中注入外源性BDNF来加速加速的灭绝学习,这表明IL(而非BLA)是CTA灭绝中BDNF的主要作用部位。总之,这些数据表明,BLA-IL电路通过确定BDNF为关键调节剂来调节CTA记忆的灭绝。

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