DSP4 (N-2-chloroethyl-N-ethyl-2-bromobenzylamine), a new noradrenaline neurotoxin, and stimulus conditions affecting acquisition of two-way active avoidance.

T Archer
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引用次数: 46

Abstract

Several stimulus (conditioned stimulus [CS] and unconditioned stimulus) variables known to affect the rate of acquisition of the two-way active avoidance task were investigated in rats treated with the novel selective noradrenaline neurotoxin DSP4 (50 mg/kg, ip). Although the DSP4 rats did not demonstrate the linear relation between CS duration and avoidance acquisition to the same extent as the control rats, their avoidance performance was as drastically disrupted as that of the controls both by preexposure to the CS and by increasing levels of shock intensity. The DSP4 rats also evidenced fear retention for the shuttle box cues previously associated with inescapable shocks to as marked a degree as control rats. Biochemical data indicated profound noradrenaline depletion in the cortex and hippocampus and a lesser depletion in the hypothalamus. It seems unlikely that the small serotonin depletions evidenced here can account for the avoidance deficits. The present findings offer a behavioral characterization of the consistent DSP4-induced impairment of two-way active avoidance acquisition.

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DSP4 (n -2-氯乙基- n -乙基-2-溴苄胺),一种新的去甲肾上腺素神经毒素,以及影响双向主动回避获得的刺激条件。
用新型选择性去甲肾上腺素神经毒素DSP4 (50 mg/kg, ip)治疗大鼠,研究了几种已知影响双向主动回避任务获得率的刺激(条件刺激[CS]和非条件刺激)变量。尽管DSP4大鼠在CS持续时间和回避获得之间没有表现出与对照大鼠相同的线性关系,但由于预暴露于CS和增加电击强度水平,它们的回避表现与对照一样受到严重破坏。DSP4大鼠对先前与不可避免的电击相关的穿梭盒线索的恐惧保留程度与对照大鼠一样明显。生化数据表明,皮质和海马体的去甲肾上腺素消耗严重,下丘脑的去甲肾上腺素消耗较少。这里所证明的少量血清素消耗似乎不太可能解释回避缺陷。本研究结果提供了一致性dsp4诱导的双向主动回避习得障碍的行为特征。
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