Penet Marie-France, Laigle Christophe, Fur Yann Le, Confort-Gouny Sylviane, Heurteaux Catherine, Cozzone Patrick J, Viola Angèle
Faculté de Médecine, Centre de Résonance Magnétique Biologique et Médicale, UMR CNRS 6612, Université de la Méditérranée, 27 Bd J. Moulin, Marseille 13005, France.
Behav Genet. 2006 Sep;36(5):732-44. doi: 10.1007/s10519-006-9077-4.
C57BL6J, FVB/N and 129/SvJ mice are commonly used as background strains to engineer genetic models of brain pathologies and psychiatric disorders. Magnetic resonance imaging (MRI) and spectroscopy provide alternative approaches to neuroanatomy, histology and neurohistochemistry for investigating the correlation between genes and brain neuroanatomy and neurometabolism in vivo. We used these techniques to non-invasively characterize the cerebral morphologic and metabolic endophenotypes of inbred mouse strains commonly used in neurological and behavioral research. We observed a great variability in the volume of ventricles and of structures involved in cognitive function (cerebellum and hippocampus) among these strains. In addition, distinct metabolic profiles were evidenced with variable levels of N-acetylaspartate, a neuronal marker, and of choline, a compound found in membranes and myelin. Besides, significant differences in high-energy phosphates and phospholipids were detected. Our findings demonstrate the great morphologic and metabolic heterogeneity among C57BL/ 6J, FVB/N and 129/SvJ mice. They emphasize the importance of selecting the appropriate genetic background for over-expressing or silencing a gene and provide some directions for modeling symptoms that characterize psychiatric disorders such as autism, schizophrenia and depression.
C57BL6J、FVB/N和129/SvJ小鼠通常被用作构建脑病理学和精神疾病遗传模型的背景品系。磁共振成像(MRI)和波谱学为神经解剖学、组织学和神经组织化学提供了替代方法,用于在体内研究基因与脑神经解剖学及神经代谢之间的相关性。我们使用这些技术对神经学和行为研究中常用的近交小鼠品系的脑形态学和代谢内表型进行了非侵入性表征。我们观察到这些品系之间脑室以及参与认知功能的结构(小脑和海马体)的体积存在很大差异。此外,还发现了不同的代谢谱,其中神经元标志物N - 乙酰天门冬氨酸以及膜和髓鞘中发现的化合物胆碱的水平各不相同。此外,还检测到高能磷酸盐和磷脂存在显著差异。我们的研究结果表明C57BL/6J、FVB/N和129/SvJ小鼠之间存在很大的形态学和代谢异质性。它们强调了为过表达或沉默基因选择合适遗传背景的重要性,并为模拟自闭症、精神分裂症和抑郁症等精神疾病的症状提供了一些指导方向。