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应激和皮质酮对杏仁核活动及可塑性的影响。

Effects of stress and corticosterone on activity and plasticity in the amygdala.

作者信息

Kavushansky Alexandra, Richter-Levin Gal

机构信息

Department of Psychology and Brain and Behavior Research Center, University of Haifa, Haifa, Israel.

出版信息

J Neurosci Res. 2006 Nov 15;84(7):1580-7. doi: 10.1002/jnr.21058.

Abstract

The basolateral amygdala (BLA) has been repeatedly shown to mediate the effects of stress on memory-related processes. However, the way in which stress influences BLA itself has not been fully explored. We studied the effects of stress and corticosterone (CORT) on activity and plasticity in the BLA in the rat, using the electrophysiological procedure of long-term potentiation (LTP) induction in vivo. Rats were exposed to an acute elevated-platform stress or administered vehicle or 5 mg/kg, 10 mg/kg, or 25 mg/kg of CORT systemically, after which they were anesthetized and prepared for field potential recording in the BLA, in response to stimulation of the entorhinal cortex. The elevated platform stress enhanced baseline responses in BLA and plasma CORT but inhibited amygdalar LTP. Systemic injections of CORT enhanced baseline responses in BLA in a dose-dependent manner but did not influence amygdalar LTP. Posttetanic potentiation (PTP) was similarly reduced in CORT- and vehicle-injected groups, possibly because of an additional stress from the injection, thus implying that PTP and LTP in the amygdala differentially react to stress. These results suggest that the increase in amygdalar baseline activity following the exposure to stress may be mediated by the concomitant increase in plasma CORT. However, the suppression of amygdalar LTP is not a result of elevated levels of CORT, suggesting that activity and plasticity in the amygdala might be mediated by different mechanisms.

摘要

基底外侧杏仁核(BLA)已被反复证明可介导应激对记忆相关过程的影响。然而,应激影响BLA自身的方式尚未得到充分探索。我们使用体内长时程增强(LTP)诱导的电生理程序,研究了应激和皮质酮(CORT)对大鼠BLA活性和可塑性的影响。将大鼠暴露于急性高架平台应激,或全身给予溶剂、5mg/kg、10mg/kg或25mg/kg的CORT,之后将它们麻醉并准备在BLA中记录场电位,以响应内嗅皮层的刺激。高架平台应激增强了BLA的基线反应和血浆CORT,但抑制了杏仁核LTP。全身注射CORT以剂量依赖的方式增强了BLA的基线反应,但不影响杏仁核LTP。在注射CORT和溶剂的组中,强直后增强(PTP)同样降低,这可能是由于注射带来的额外应激,因此表明杏仁核中的PTP和LTP对应激的反应不同。这些结果表明,暴露于应激后杏仁核基线活性的增加可能由血浆CORT的相应增加介导。然而,杏仁核LTP的抑制不是CORT水平升高的结果,这表明杏仁核中的活性和可塑性可能由不同机制介导。

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