长时程增强
皮质酮
糖皮质激素受体
海马结构
突触可塑性
糖皮质激素
封锁
变质塑性
慢性应激
神经科学
海马体
敌手
内分泌学
内科学
受体
生物
医学
激素
作者
Harmen J. Krugers,Pieter M. Goltstein,S. van der Linden,Marian Joëls
标识
DOI:10.1111/j.1460-9568.2006.04842.x
摘要
Abstract Prolonged exposure to stressful events has been reported to inhibit the ability of hippocampal synapses to increase their synaptic efficacy. Here we tested if these effects could be prevented by blocking activation of glucocorticoid receptors during the last 4 days of the stress paradigm. In order to address this question, animals were exposed to 21 days of variable and inescapable stressors. Handled animals served as controls. During the last 4 days of the stress regime, animals were treated with the glucocorticoid receptor antagonist RU486. We found that 1 day after the last stressor, synaptic plasticity in the CA1 area of hippocampal slices is impaired in chronically stressed animals. Importantly, treating chronically stressed animals with RU486 for 4 days completely prevented this decrease in synaptic potentiation; RU486 treatment of handled controls did not affect potentiation. Treating hippocampal slices from control animals with high levels of corticosterone also impaired synaptic plasticity; this effect was similar for untreated and RU486‐treated animals. Treating slices from chronically stressed animals with corticosterone did not further decrease synaptic plasticity. These data indicate that 4 days blockade of the glucocorticoid receptor, during a stress regime, is sufficient to fully restore synaptic plasticity.
科研通智能强力驱动
Strongly Powered by AbleSci AI