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新生期双侧胡须修剪可随年龄改变雄性小鼠脑内神经递质水平,并导致青春期社交行为异常的出现。

Neonatal bilateral whisker trimming in male mice age-dependently alters brain neurotransmitter levels and causes adolescent onsets of social behavior abnormalities.

机构信息

Laboratory of Molecular Biology, Department of Biofunctional Analysis, Gifu Pharmaceutical University.

Hashima Laboratory, Nihon Bioresearch Inc.

出版信息

Biomed Res. 2023;44(4):147-160. doi: 10.2220/biomedres.44.147.

Abstract

Tactile perception via whiskers is important in rodent behavior. Whisker trimming during the neonatal period affects mouse behaviors related to both whisker-based tactile cognition and social performance. However, the molecular basis of these phenomena is not completely understood. To solve this issue, we investigated developmental changes in transmitters and metabolites in various brain regions of male mice subjected to bilateral whisker trimming during the neonatal period (10 days after birth [BWT10 mice]). We discovered significantly lower levels of 3-methoxy-4-hydroxyphenyl glycol (MHPG), the major noradrenaline metabolite, in various brain regions of male BWT10 mice at both early/late adolescent stages (at P4W and P8W). However, reduced levels of dopamine (DA) and their metabolites were more significantly identified at P8W in the nuclear origins of monoamine (midbrain and medulla oblongata) and the limbic system (frontal cortex, amygdala, and hippocampus) than at P4W. Furthermore, the onset of social behavior deficits (P6W) was observed later to the impairment of whisker-based tactile cognitive behaviors (P4W). Taken together, these findings suggest that whisker-mediated tactile cognition may contribute toprogressive abnormalities in social behaviors in BWT10 mice accompanied by impaired development of dopaminergic systems.

摘要

通过胡须感知触觉在啮齿动物行为中很重要。新生期修剪胡须会影响与胡须触觉认知和社交表现相关的小鼠行为。然而,这些现象的分子基础尚不完全清楚。为了解决这个问题,我们研究了在新生期(出生后 10 天[BWT10 小鼠])接受双侧胡须修剪的雄性小鼠的各个大脑区域中递质和代谢物的发育变化。我们发现,在早期/晚期青少年期(P4W 和 P8W),雄性 BWT10 小鼠的各个大脑区域中的 3-甲氧基-4-羟基苯乙二醇(MHPG),即去甲肾上腺素的主要代谢物,水平明显降低。然而,在中脑和延髓的单胺核起源(中脑和延髓)和边缘系统(额叶皮质、杏仁核和海马体)中,DA 及其代谢物的水平在 P8W 时比在 P4W 时降低得更为显著。此外,社交行为缺陷(P6W)的出现晚于胡须触觉认知行为的损伤(P4W)。综上所述,这些发现表明,胡须介导的触觉认知可能导致 BWT10 小鼠的社交行为逐渐出现异常,同时伴随着多巴胺能系统发育不良。

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