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Serotonergic modulation of ‘waiting impulsivity is mediated by the impulsivity phenotype in humans

机译:等待冲动的血清素能调节是由人类冲动表型介导的

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摘要

In rodents, the five-choice serial reaction time task (5-CSRTT) has been established as a reliable measure of waiting impulsivity being defined as the ability to regulate a response in anticipation of reinforcement. Key brain structures are the nucleus accumbens (NAcc) and prefrontal regions (for example, pre- and infralimbic cortex), which are, together with other transmitters, modulated by serotonin. In this functional magnetic resonance imaging study, we examined 103 healthy males while performing the 5-CSRTT measuring brain activation in humans by means of a paradigm that has been widely applied in rodents. Subjects were genotyped for the tryptophan hydroxylase-2 (TPH2; G-703T; rs4570625) variant, an enzyme specific for brain serotonin synthesis. We addressed neural activation patterns of waiting impulsivity and the interaction between the NAcc and the ventromedial prefrontal cortex (vmPFC) using dynamic causal modeling. Genetic influence was examined via interaction analyses between the TPH2 genotype (GG homozygotes vs T allele carriers) and the degree of impulsivity as measured by the 5-CSRTT. We found that the driving input of the vmPFC was reduced in highly impulsive T allele carriers (reflecting a reduced top-down control) in combination with an enhanced response in the NAcc after correct target processing (reflecting an augmented response to monetary reward). Taken together, we found a high overlap of our findings with reports from animal studies in regard to the underlying cognitive processes, the brain regions associated with waiting impulsivity and the neural interplay between the NAcc and vmPFC. Therefore, we conclude that the 5-CSRTT is a promising tool for translational studies.
机译:在啮齿动物中,已经建立了五项选择的连续反应时间任务(5-CSRTT),作为等待冲动的可靠度量,它被定义为在预期增强时调节响应的能力。关键的大脑结构是伏隔核(NAcc)和前额叶区域(例如前边缘皮层和下边缘皮层),它们与其他递质一起由血清素调节。在这项功能性磁共振成像研究中,我们检查了103位健康的男性,同时通过广泛应用于啮齿动物的范例执行了5-CSRTT测量人类大脑激活的方法。对受试者进行色氨酸羟化酶2(TPH2; G-703T; rs4570625)变体的基因分型,该变体是一种针对脑5羟色胺合成的特异性酶。我们使用动态因果模型研究了等待冲动的神经激活模式以及NAcc和腹侧前额叶皮层(vmPFC)之间的相互作用。通过TPH2基因型(GG纯合子与T等位基因携带者)和5-CSRTT测量的冲动程度之间的相互作用分析检查了遗传影响。我们发现,在高度冲动的T等位基因携带者中vmPFC的驾驶输入减少了(反映了自上而下的控制减少),并且在正确的目标处理后NAcc中的响应得到了增强(反映了对金钱报酬的增强响应)。两者合计,我们发现我们的发现与动物研究的报告高度重叠,这些报告涉及潜在的认知过程,与等待冲动相关的大脑区域以及NAcc和vmPFC之间的神经相互作用。因此,我们得出结论,5-CSRTT是用于翻译研究的有前途的工具。

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