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Waiting impulsivity during reward seeking increases adult hippocampal neurogenesis in mice

机译:在奖励期间等待冲动,寻求将成年海马神经发生增加小鼠

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摘要

Impulsivity is defined as a predisposition toward rapid, unplanned reactions in response to internal or external stimuli, often yielding negative consequences. Accordingly, impulsivity is considered a significant risk factor for developing addictive behaviors. The hippocampus is involved in regulating behavioral adaptability and learned behaviors. Consequently, abnormal hippocampal function has been demonstrated to contribute to impulsive and addictive behaviors. Furthermore, differential reinforcement of low rates of behavior (DRL) has shown that the hippocampus is implicated in reward acquisition and impulsivity in humans and rodent models. We have previously shown that impulsive behavior potentiates hippocampal neuroblast proliferation. However, the fate of these precursor cells produced during impulsive reward seeking remains unknown. Here, we demonstrate that DRL-mediated impulsive reward seeking with the 2-choice reaction time task (2-CRTT) increases the number of BrdU labeled cells in the dentate gyrus region of the hippocampus. Importantly, our results also show a significant increase in BrdU(+) and NeuN(+) colocalized mature newborn neurons in mice exhibiting impulsivity compared to non-impulsive control mice. These results suggest that operant reward seeking during unpredictable schedules of reinforcement contributes to adult hippocampal neurogenesis.
机译:冲动被定义为响应内部或外部刺激的快速,无计划反应的易感性,通常产生负面后果。因此,冲动被认为是发展成瘾行为一个显著的危险因素。海马涉及调节行为适应性和学习行为。因此,已经证明了异常的海马函数有助于冲动和上瘾的行为。此外,低于行为(DRL)的差异增强表明海马涉及人类和啮齿动物模型中的奖励采集和冲动。我们之前已经表明,冲动行为增强了海马神经细胞增殖。然而,在冲动奖励寻求期间产生的这些前体细胞的命运仍然是未知的。在这里,我们证明了使用2选择反应时间任务(2-CRTT)的DRL介导的脉冲奖励试图增加了海马的牙齿上标记的细胞的BRDU标记细胞的数量。重要的是,我们的结果还显示出与非冲动对照小鼠相比表现出冲动的小鼠中Brdu(+)和Neun(+)结焦化的新生儿新生儿的显着增加。这些结果表明,在不可预测的增强时间表期间寻求的操作奖励有助于成年海马神经发生。

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