[Genetic and Environmental Factors in Childhood Affecting High Brain Function].

Q3 Medicine
Masaki Kakeyama
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引用次数: 0

Abstract

The brain and mind are not only determined genetically but are also nurtured by environmental stimuli in early life. However, the relationship between early life environment and phenotypes in adulthood remains elusive. Using the IntelliCage-based competition task for group-housed mice, we previously found that maternal exposure to a low dose of an environmental pollutant, dioxin, resulted in abnormal social behavior, that is, low competitive dominance, which is defined by decreased occupancy of limited resource sites under highly competitive circumstances. Although we were unable to identify which behavioral phenotype applies to abnormalities such as "human social nature", we found signs of hypoactivation of the medial prefrontal cortex, as seen in patients with autism spectrum disorder. In addition, another model of environmental factors, repeated isolation during development, and that of genetic factors including mice with neuronal heterotopia, which refers to brain malformations resulting from deficits of neuronal migration, showed low competitive dominance. These results indicate that a constitutive approach to capture the neural network of the whole brain is necessary especially in cases where the temporal gap of causal relationships is large such as DOHaD.

[影响儿童高脑功能的遗传和环境因素]。
大脑和心智不仅是由基因决定的,而且在生命早期也受到环境刺激的培养。然而,早期生活环境与成年期表型之间的关系仍然难以捉摸。利用基于智力智力的群居小鼠竞争任务,我们之前发现母鼠暴露于低剂量的环境污染物二恶英会导致异常的社会行为,即低竞争优势,这是通过在高度竞争的情况下减少对有限资源场所的占用来定义的。虽然我们无法确定哪种行为表型适用于“人类社会天性”等异常,但我们发现内侧前额叶皮层活性降低的迹象,正如自闭症谱系障碍患者所见。此外,另一种环境因素模型,即发育过程中的重复隔离,以及遗传因素模型,包括神经元异位小鼠(指由于神经元迁移缺陷导致的大脑畸形),均表现出较低的竞争优势。这些结果表明,一个本构的方法来捕捉整个大脑的神经网络是必要的,特别是在因果关系的时间差距很大的情况下,如DOHaD。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Japanese Journal of Hygiene
Japanese Journal of Hygiene Medicine-Medicine (all)
CiteScore
0.90
自引率
0.00%
发文量
7
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