Neuroimaging Research Unit, Institute of Neurological Sciences, National Research Council, Catanzaro, Italy.
Behav Brain Res. 2010 Jul 29;211(1):118-24. doi: 10.1016/j.bbr.2010.03.021. Epub 2010 Mar 18.
A functional variant in the mono-amine oxidase A (MAO A) gene has been shown to impact neural function related to cognitive and affective processing and increase risk for conduct disorders. However, whether MAO A could be a candidate gene for structural variation in the human brain remains to be clarified. This study is the first to investigate the effect of this genotype on brain morphology by measuring cortical thickness. We genotyped 59 healthy male subjects (36 carrying the MAO A High-activity allele and 23 the MAO A Low-activity allele) who underwent structural MRI at 3T. Models of the grey-white and pial surfaces were generated for each individual's cortices, and the distance between these two surfaces was used to compute cortical thickness within a priori regions of interest of the orbitofrontal and cingulate cortices. Surface-based analysis of the cortical mantle showed that the MAO A genotype was associated with structural differences in the orbitofrontal cortex bilaterally, where the MAO A High-activity group showed the highest cortical thickness value and the MAO A Low-activity group the lowest. Otherwise, no significant difference was detected within the cingulate cortex. Thus, we confirm the hypothesis that the MAO A genotype has a specific impact on human brain morphology. In particular, thickness measurement of the orbitofrontal cortex provides new evidence about the biological impact of the MAO A genotype on neural systems relevant to the pathophysiology of behavioural disorders.
单胺氧化酶 A(MAO A)基因中的功能变体已被证明会影响与认知和情感处理相关的神经功能,并增加行为障碍的风险。然而,MAO A 是否可以成为人类大脑结构变异的候选基因仍有待阐明。这项研究首次通过测量皮质厚度来研究这种基因型对大脑形态的影响。我们对 59 名健康男性进行了基因分型(36 名携带 MAO A 高活性等位基因,23 名携带 MAO A 低活性等位基因),他们在 3T 磁共振成像仪上接受了结构磁共振成像。为每个人的皮质生成了灰质-白质和软脑膜表面的模型,并使用这些表面之间的距离来计算眶额皮质和扣带皮质的预先确定感兴趣区域内的皮质厚度。皮质覆盖层的基于表面的分析表明,MAO A 基因型与双侧眶额皮质的结构差异有关,其中 MAO A 高活性组的皮质厚度值最高,MAO A 低活性组的皮质厚度值最低。此外,在扣带皮质内未检测到显著差异。因此,我们证实了 MAO A 基因型对人类大脑形态有特定影响的假设。特别是,眶额皮质的厚度测量为 MAO A 基因型对与行为障碍病理生理学相关的神经系统的生物学影响提供了新的证据。