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A functional polymorphism in the prodynorphin gene affects cognitive flexibility and brain activation during reversal learning

机译:前逆啡肽基因中的功能多态性影响逆向学习过程中的认知灵活性和大脑激活

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Whether the opioid system plays a role in the ability to flexibly adapt behavior is still unclear. We used fMRI to investigate the effect of a nucleotide tandem repeat (68-bp VNTR) functional polymorphism of the prodynorphin (PDYN) gene on cerebral activation during a reversal learning task in which participants had to flexibly adapt stimulus-response associations. Past studies suggested that alleles with 3 or 4 repeats (HH genotype) of this polymorphism are associated with higher levels of dynorphin peptides than alleles with 1 or 2 repeats (LL genotype). On the behavioral level, the HH group made more perseverative errors than the LL group. On the neural level, the HH group demonstrated less engagement of left orbitofrontal cortex (lOFC) and cortico-striatal circuitry, and lower effective connectivity of lOFC with anterior midcingulate cortex and anterior insula/ventrolateral prefrontal cortex during reversal learning and processing negative feedback. This points to a lower ability of the HH genotype to monitor or adapt to changes in reward contingencies. These findings provide first evidence that dynorphins may contribute to individual differences in reversal learning, and that considering the opioid system may shed new light on the neurochemical correlates of decision-making and behavioral regulation.
机译:阿片类药物系统是否在灵活适应行为的能力中发挥作用尚不清楚。我们使用功能磁共振成像来研究逆向学习任务中前强啡肽(PDYN)基因的核苷酸串联重复序列(68 bp VNTR)功能多态性对大脑激活的影响,在该过程中,参与者必须灵活地适应刺激-反应关联。过去的研究表明,与具有1个或2个重复(LL基因型)的等位基因相比,具有这种多态性的3个或4个重复(HH基因型)的等位基因与强啡肽肽的含量更高。在行为方面,HH组比LL组犯了更多的持久性错误。在神经水平上,HH组在逆向学习和处理负反馈过程中表现出较少的左眶额叶皮质(lOFC)和皮质-纹状体回路参与,而lOFC与前中齿皮层和前岛/前外侧前额叶皮质的有效连通性较低。这表明HH基因型监测或适应奖励意外情况变化的能力较低。这些发现提供了第一个证据,即强啡肽可能有助于逆向学习中的个体差异,并且考虑到阿片类药物系统可能为决策和行为调控的神经化学相关性提供新的思路。

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