Université de Lyon, Lyon, France.
PLoS One. 2013;8(1):e53888. doi: 10.1371/journal.pone.0053888. Epub 2013 Jan 14.
Environmental enrichment of laboratory animals influences brain plasticity, stimulates neurogenesis, increases neurotrophic factor expression, and protects against the effects of brain insult. However, these positive effects are not constantly observed, probably because standardized procedures of environmental enrichment are lacking. Therefore, we engineered an enriched cage (the Marlau™ cage), which offers: (1) minimally stressful social interactions; (2) increased voluntary exercise; (3) multiple entertaining activities; (4) cognitive stimulation (maze exploration), and (5) novelty (maze configuration changed three times a week). The maze, which separates food pellet and water bottle compartments, guarantees cognitive stimulation for all animals. Compared to rats raised in groups in conventional cages, rats housed in Marlau™ cages exhibited increased cortical thickness, hippocampal neurogenesis and hippocampal levels of transcripts encoding various genes involved in tissue plasticity and remodeling. In addition, rats housed in Marlau™ cages exhibited better performances in learning and memory, decreased anxiety-associated behaviors, and better recovery of basal plasma corticosterone level after acute restraint stress. Marlau™ cages also insure inter-experiment reproducibility in spatial learning and brain gene expression assays. Finally, housing rats in Marlau™ cages after severe status epilepticus at weaning prevents the cognitive impairment observed in rats subjected to the same insult and then housed in conventional cages. By providing a standardized enriched environment for rodents during housing, the Marlau™ cage should facilitate the uniformity of environmental enrichment across laboratories.
刺激大脑的可塑性,促进神经发生,增加神经营养因子的表达,防止大脑损伤的影响。然而,这些积极的影响并不总是观察到,可能是因为缺乏标准化的环境丰富化程序。因此,我们设计了一个丰富的笼子(Marlau™笼子),它提供:(1)最小压力的社会互动;(2)增加自愿运动;(3)多种娱乐活动;(4)认知刺激(迷宫探索),和(5)新奇(迷宫配置每周改变三次)。迷宫将食物颗粒和水瓶隔开,保证所有动物的认知刺激。与在传统笼子中饲养的群体相比,饲养在 Marlau™笼子中的大鼠表现出皮质厚度增加、海马神经发生和海马转录本水平增加,这些转录本编码涉及组织可塑性和重塑的各种基因。此外,饲养在 Marlau™笼子中的大鼠在学习和记忆方面表现更好,焦虑相关行为减少,急性束缚应激后基础血浆皮质酮水平的恢复更好。Marlau™笼子还保证了空间学习和大脑基因表达检测的实验间重现性。最后,在断奶后严重癫痫持续状态后将大鼠饲养在 Marlau™笼子中,可以防止在相同刺激后饲养在传统笼子中的大鼠出现认知障碍。通过在饲养期间为啮齿动物提供标准化的丰富环境,Marlau™笼子应该有助于实验室之间环境丰富化的统一。