捕食者应激和抗抑郁药噻奈普汀对海马体和基底外侧杏仁核生理可塑性的差异影响。

Differential effects of predator stress and the antidepressant tianeptine on physiological plasticity in the hippocampus and basolateral amygdala.

作者信息

Vouimba Rose-Marie, Muñoz Carmen, Diamond David M

机构信息

Department of Psychology, University of South Florida, 4202 E. Fowler Avenue, PCD 4118G, Tampa, FL 33620, USA.

出版信息

Stress. 2006 Mar;9(1):29-40. doi: 10.1080/10253890600610973.

Abstract

Stress can profoundly affect memory and alter the functioning of the hippocampus and amygdala. Studies have also shown that the antidepressant tianeptine can block the effects of stress on hippocampal and amygdala morphology and synaptic plasticity. We examined the effects of acute predator stress and tianeptine on long-term potentiation (LTP; induced by 100 pulses in 1 s) and primed burst potentiation (PB; a low threshold form of LTP induced by only five physiologically patterned pulses) in CA1 and in the basolateral nucleus (BLA) of the amygdala in anesthetized rats. Predator stress blocked the induction of PB potentiation in CA1 and enhanced LTP in BLA. Tianeptine blocked the stress-induced suppression of PB potentiation in CA1 without affecting the stress-induced enhancement of LTP in BLA. In addition, tianeptine administered under non-stress conditions enhanced PB potentiation in the hippocampus and LTP in the amygdala. These findings support the hypothesis that acute stress impairs hippocampal functioning and enhances amygdaloid functioning. The work also provides insight into the actions of tianeptine with the finding that it enhanced electrophysiological measures of plasticity in the hippocampus and amygdala under stress, as well as non-stress, conditions.

摘要

应激可深刻影响记忆,并改变海马体和杏仁核的功能。研究还表明,抗抑郁药噻奈普汀可阻断应激对海马体和杏仁核形态及突触可塑性的影响。我们研究了急性捕食者应激和噻奈普汀对麻醉大鼠海马体CA1区和杏仁核基底外侧核(BLA)的长时程增强(LTP;由1秒内100个脉冲诱导)和强直后增强(PB;一种仅由五个生理模式脉冲诱导的低阈值LTP形式)的影响。捕食者应激阻断了CA1区PB增强的诱导,并增强了BLA区的LTP。噻奈普汀阻断了应激诱导的CA1区PB增强的抑制,而不影响应激诱导的BLA区LTP增强。此外,在非应激条件下给予噻奈普汀可增强海马体中的PB增强和杏仁核中的LTP。这些发现支持了急性应激损害海马体功能并增强杏仁核功能的假说。这项研究还通过发现噻奈普汀在应激和非应激条件下均增强了海马体和杏仁核可塑性的电生理指标,为噻奈普汀的作用提供了见解。

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