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对年轻的 GluA1 基因缺陷小鼠进行表型分析——基因功能丧失模型中的行为特征研究

Phenotyping Young GluA1 Deficient Mice - A Behavioral Characterization in a Genetic Loss-of-Function Model.

作者信息

Reiber Maria, Stirling Helen, Sprengel Rolf, Gass Peter, Palme Rupert, Potschka Heidrun

机构信息

Institute of Pharmacology, Toxicology, and Pharmacy, Ludwig Maximilian University of Munich, Munich, Germany.

Max Planck Institute for Medical Research, Heidelberg, Germany.

出版信息

Front Behav Neurosci. 2022 Jun 2;16:877094. doi: 10.3389/fnbeh.2022.877094. eCollection 2022.

Abstract

Alterations of glutamatergic neurotransmission have been implicated in neurodevelopmental and neuropsychiatric disorders. Mice lacking the GluA1 AMPA receptor subunit, encoded by the gene, display multiple phenotypical features associated with glutamatergic dysfunction. While the phenotype of adult GluA1 deficient ( ) mice has been studied comprehensively, there are relevant gaps in knowledge about the course and the onset of behavioral alterations in the knockout mouse model during post-weaning development. Based on former investigations in young wild-type mice, we exposed female and male adolescent mice to a behavioral home-cage based testing battery designed for the purpose of severity assessment. Data obtained from mice with a constitutive loss of GluA1 were compared with those from wild-type littermates. We identified several genotype-dependent behavioral alterations in young mice. While the preference for sweetness was not affected by genotype during adolescence, mice displayed limited burrowing performance, and reached lower nest complexity scores. Analysis of home-cage based voluntary wheel running performance failed to confirm genotype-dependent differences. In contrast, when exposed to the open field test, mice showed pronounced hyperlocomotion in early and late adolescence, and female mice exhibited thigmotaxis when prepubescent. We found increased corticosterone metabolite levels in fecal samples of adolescent mice with females exhibiting increased adrenocortical activity already in prepubescence. Considering the course of behavioral modifications in early and late adolescence, the results do not support a persistent level of distress associated with GluA1 deficiency in the line. In contrast, the laboratory-specific readouts indicate transient, mild impairments of behavioral patterns relevant to animal welfare, and suggest a mild overall burden of the line.

摘要

谷氨酸能神经传递的改变与神经发育和神经精神疾病有关。缺乏由该基因编码的GluA1 AMPA受体亚基的小鼠表现出多种与谷氨酸能功能障碍相关的表型特征。虽然已经对成年GluA1缺陷(GluA1-/-)小鼠的表型进行了全面研究,但在断奶后发育过程中,关于GluA1基因敲除小鼠模型行为改变的过程和起始时间,仍存在相关知识空白。基于之前对年轻野生型小鼠的研究,我们将雌性和雄性青春期GluA1-/-小鼠暴露于基于行为的笼内测试组中,该测试组旨在进行严重程度评估。将GluA1基因组成型缺失小鼠的数据与野生型同窝小鼠的数据进行比较。我们在年轻的GluA1-/-小鼠中发现了几种基因型依赖性的行为改变。虽然青春期期间对甜味的偏好不受基因型影响,但GluA1-/-小鼠的掘洞能力有限,且巢穴复杂度得分较低。对基于笼内的自愿轮转运动表现的分析未能证实基因型依赖性差异。相反,当暴露于旷场试验时,GluA1-/-小鼠在青春期早期和晚期表现出明显的运动亢进,青春期前的雌性GluA1-/-小鼠表现出趋触性。我们发现青春期GluA1-/-小鼠粪便样本中的皮质酮代谢物水平升高,雌性小鼠在青春期前肾上腺皮质活动就已增加。考虑到青春期早期和晚期行为改变的过程,结果不支持该品系中与GluA1缺陷相关的持续应激水平。相反,实验室特定的读数表明与动物福利相关的行为模式存在短暂、轻微的损害,并表明该品系总体负担较轻。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02a7/9204703/a82e9cc32903/fnbeh-16-877094-g001.jpg

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