Ikegami S, Shumiya S, Kawamura H
Department of Neuroscience, Mitsubishi Kasei Institute of Life Sciences, Tokyo, Japan.
Behav Brain Res. 1992 Oct 31;51(1):15-22. doi: 10.1016/s0166-4328(05)80307-9.
Age-related changes in learning performance and the brain cholinergic system were studied in a senescence accelerated mice-prone series (SAM-P/8) and a senescence accelerated mice-resistant series (SAM-R/1, control) bred under specific pathogen-free conditions. In a radial-arm maze task, SAM-P/8 mice at 4 and 12 months of age showed virtually no significant impairment in working memory or reference memory compared with SAM-R/1 mice at the same age, although they needed more time to complete a trial than SAM-R/1. In contrast, in a passive avoidance task, SAM-P/8 showed a marked age-accelerated deficit in acquisition performance relative to SAM-R/1. Also, SAM-P/8 showed an age-accelerated decrease in locomotion and rearing in an open-field box. At the end of these behavioral tasks, neurochemical analyses showed that there were no differences in the concentrations of acetylcholine (ACh) in the cortex, hippocampus, striatum, midbrain, or cerebellum between SAM-P/8 and SAM-R/1. Although SAM-P/8 mice did not demonstrate any age-accelerated decline in radial-arm maze performance, they showed a normal age-related decline particularly in working memory, equal to that observed in SAM-R/1. Also, ACh levels in the aged groups of SAM-P/8 showed a significant decrease related to normal aging in the hippocampus and striatum, and a slight decrease in the cortex compared to the young group of the same strain. Thus, we found that SAM-P/8 show dissociative effects of aging in spatial learning and passive avoidance performance.
在特定病原体-free条件下饲养的衰老加速易感性小鼠系列(SAM-P/8)和衰老加速抗性小鼠系列(SAM-R/1,对照)中,研究了学习能力和脑胆碱能系统的年龄相关变化。在放射状臂迷宫任务中,4个月和12个月大的SAM-P/8小鼠与相同年龄的SAM-R/1小鼠相比,在工作记忆或参考记忆方面几乎没有明显损害,尽管它们完成一次试验所需的时间比SAM-R/1长。相比之下,在被动回避任务中,相对于SAM-R/1,SAM-P/8在获得性表现方面显示出明显的年龄加速缺陷。此外,SAM-P/8在旷场箱中的运动和竖毛行为也表现出年龄加速下降。在这些行为任务结束时,神经化学分析表明,SAM-P/8和SAM-R/1在皮质、海马、纹状体、中脑或小脑中的乙酰胆碱(ACh)浓度没有差异。虽然SAM-P/8小鼠在放射状臂迷宫表现中没有显示出任何年龄加速下降,但它们显示出与年龄相关的正常下降,特别是在工作记忆方面,与SAM-R/1中观察到的情况相同。此外,与同一品系的年轻组相比,SAM-P/8老年组海马和纹状体中的ACh水平与正常衰老相关显著下降,皮质中略有下降。因此,我们发现SAM-P/8在空间学习和被动回避表现中显示出衰老的分离效应。