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Different Roles of BDNF in Nucleus Accumbens Core versus Shell during the Incubation of Cue-Induced Cocaine Craving and Its Long-Term Maintenance

机译:在提示诱导可卡因渴望及其长期维持潜伏期中,BDNF在伏隔核核心与外壳中的不同作用。

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摘要

Brain-derived neurotrophic factor (BDNF) contributes to diverse types of plasticity, including cocaine addiction. We investigated the role of BDNF in the rat nucleus accumbens (NAc) in the incubation of cocaine craving over 3 months of withdrawal from extended access cocaine self-administration. First, we confirmed by immunoblotting that BDNF levels are elevated after this cocaine regimen on withdrawal day 45 (WD45) and showed that BDNF mRNA levels are not altered. Next, we explored the time course of elevated BDNF expression using immunohistochemistry. Elevation of BDNF in the NAc core was detected on WD45 and further increased on WD90, whereas elevation in shell was not detected until WD90. Surface expression of activated tropomyosin receptor kinase B (TrkB) was also enhanced on WD90. Next, we used viral vectors to attenuate BDNF-TrkB signaling. Virus injection into the NAc core enhanced cue-induced cocaine seeking on WD1 compared with controls, whereas no effect was observed on WD30 or WD90. Attenuating BDNF-TrkB signaling in shell did not affect cocaine seeking on WD1 or WD45 but significantly decreased cocaine seeking on WD90. These results suggest that basal levels of BDNF transmission in the NAc core exert a suppressive effect on cocaine seeking in early withdrawal (WD1), whereas the late elevation of BDNF protein in NAc shell contributes to incubation in late withdrawal (WD90). Finally, BDNF protein levels in the NAc were significantly increased after ampakine treatment, supporting the novel hypothesis that the gradual increase of BDNF levels in NAc accompanying incubation could be caused by increased AMPAR transmission during withdrawal.
机译:脑源性神经营养因子(BDNF)有助于多种类型的可塑性,包括可卡因成瘾。我们调查了BDNF在大鼠伏隔核(NAc)中对可卡因的渴望的孵化中的作用,这些可卡因渴望从可延长的可卡因自我管理中撤出超过3个月。首先,我们通过免疫印迹证实了在撤药第45天(WD45)服用这种可卡因后,BDNF水平升高,并且表明BDNF mRNA水平没有改变。接下来,我们使用免疫组织化学探索了BDNF表达升高的时间过程。在WD45上检测到NAc核心中BDNF的升高,在WD90上进一步升高,而直到WD90才检测到壳的升高。 WD90还增强了活化的原肌球蛋白受体激酶B(TrkB)的表面表达。接下来,我们使用病毒载体来减弱BDNF-TrkB信号传导。与对照组相比,将病毒注射到NAc核中可增强WD1上提示诱导的可卡因寻找,而在WD30或WD90上未观察到效果。减弱外壳中的BDNF-TrkB信号传导不会影响WD1或WD45上的可卡因搜寻,但会显着降低WD90上的可卡因搜寻。这些结果表明,NAc核心中BDNF传递的基础水平对早期撤药(WD1)中的可卡因寻求具有抑制作用,而BDNF蛋白在NAc壳中的后期升高则有助于后期撤药(WD90)的温育。最后,安瓿处理后,NAc中的BDNF蛋白水平显着增加,支持了新的假说,即伴随温育的NAc中BDNF水平的逐渐升高可能是停药期间AMPAR传递增加引起的。

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