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The interaction between 5-HTTLPR and stress exposure influences connectivity of the executive control and default mode brain networks

机译:5-HTTLPR和压力曝光之间的相互作用影响执行控制和默认模式脑网络的连接

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We recently reported that the serotonin transporter polymorphism 5-HTTLPR moderates the relation between stress exposure and attention-deficit/hyperactivity disorder (ADHD) severity. This gene-environment interaction (GxE) has been previously tied to the processing of emotional stimuli, which is increasingly recognized to be a key factor in ADHD-related impairment. The executive control and default mode brain networks play an important role in the regulation of emotion processing, and altered connectivity of these networks has also been associated with ADHD. We therefore investigated whether resting-state connectivity of either of these networks mediates the relation of 5-HTTLPR and stress exposure with ADHD severity. Resting-state functional magnetic resonance imaging, genetic, and stress exposure questionnaire data was available for 425 adolescents and young adults (average age 17.2 years). We found that 5-HTTLPR S-allele carriers showed a more negative relation between stress exposure and connectivity of the executive control network than L-allele homozygotes, specifically in the pre/postcentral gyrus, striatum, and frontal pole. In the default mode network, we found a positive association between the GxE and supramarginal gyrus connectivity. Connectivity of either network did not significantly mediate the effect of this GxE on ADHD. Opposite effects of stress exposure on connectivity in the executive and default mode networks may contribute to findings that stress exposure is associated with lowered cognitive control and heightened levels of rumination and worrying, for S-allele carriers but not L-allele homozygotes. When combined, these effects on connectivity of both networks may relate to the emotional problems seen in individuals with ADHD.
机译:我们最近报道,血清素转运蛋白多态性5-HTTLPR调节应力暴露和注意力缺陷/多动障碍(ADHD)严重程度之间的关系。这种基因环境相互作用(GXE)先前已经与情绪刺激的加工相关联,这越来越被认为是与ADHD相关损伤的关键因素。执行控制和默认模式脑网络在情绪处理的调节中发挥着重要作用,这些网络的改变连接也与ADHD相关联。因此,我们调查了这些网络中的任何一个的休息状态连接是否介导5-HTTLPR和压力暴露与ADHD严重程度的关系。休息状态功能磁共振成像,遗传和压力暴露问卷数据可用于425名青少年和年轻人(平均年龄17.2岁)。我们发现,5-HTTLPR的S-Allele载波在应力曝光和执行控制网络的连接之间比L-Allele纯合子,特别是在预/后和后和前部的转象,纹状体和前杆之间进行更负面关系。在默认模式网络中,我们发现了GXE和凯敷的回转连接之间的正相关。网络的连接没有显着介绍该GXE对ADHD的影响。压力暴露对执行和默认模式网络的连接的相反效果可能有助于发现压力暴露与降低的认知控制和更高的谣言水平和令人担忧的响应,而不是L-等位基因纯合。当组合时,这些对两个网络的连接的影响可能与ADHD个人中看到的情绪问题有关。

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