Department of Behavioral Neuroscience, Oregon Health and Science University, Portland, Oregon 97239, USA.
Radiat Res. 2011 Oct;176(4):521-6. doi: 10.1667/rr2635.1. Epub 2011 Aug 8.
Ionizing radiation reduces the numbers of neurons expressing activity-regulated cytoskeleton-associated protein (Arc) in the hippocampal dentate gyrus (DG). It is currently unclear if that change relates to cognitive function. We assessed the effects of 1 Gy of head-only ⁵⁶Fe-particle irradiation on hippocampus-dependent and hippocampus-independent fear conditioning and determined how those changes related to Arc expression within the DG. Irradiated mice that did not receive tone-shock pairings on day 1 showed less freezing in the same context on a second day and a lower fraction of Arc-expressing neurons in the free (lower) blade of the DG than sham-irradiated mice. Those data suggested reduced hippocampus-dependent spatial habituation learning. Changes in Arc expression in the free blade correlated positively with freezing in mice that did not receive tone-shock pairings. However, irradiated mice that did receive tone-shock pairings showed enhanced contextual freezing but a reduced percentage of Arc-expressing neurons in the enclosed (upper) blade. Changes in Arc expression correlated negatively with freezing in mice that received tone-shock pairings. In animals receiving cued fear conditioning, radiation did not affect cognitive performance or the fractions of Arc-expressing neurons. While the relationship between Arc expression and cognitive performance is complex, our data suggest that radiation effects on hippocampus-dependent cognition might depend on the prominence (salience) of environmental stimuli and blade-specific Arc expression.
电离辐射会减少海马齿状回(DG)中表达活性调节细胞骨架相关蛋白(Arc)的神经元数量。目前尚不清楚这种变化是否与认知功能有关。我们评估了 1 Gy 头部 ⁵⁶Fe 粒子照射对头依赖性和海马独立性恐惧条件反射的影响,并确定这些变化与 DG 内 Arc 表达的关系。在第一天没有接受音调-电击配对的辐照小鼠,在第二天同一环境中冻结的时间更少,并且 DG 自由(较低)叶中表达 Arc 的神经元比例低于假照射小鼠。这些数据表明,海马依赖性空间习惯化学习减少。在未接受音调-电击配对的小鼠中,Arc 表达的变化与冻结呈正相关。然而,接受音调-电击配对的辐照小鼠表现出增强的上下文冻结,但 DG 封闭(上部)叶中表达 Arc 的神经元比例降低。在接受线索恐惧条件反射的动物中,辐射不会影响认知表现或表达 Arc 的神经元比例。虽然 Arc 表达与认知表现之间的关系很复杂,但我们的数据表明,辐射对海马依赖性认知的影响可能取决于环境刺激的显著性(显着性)和叶片特异性 Arc 表达。