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Amnesia of inhibitory avoidance by scopolamine is overcome by previous open-field exposure

机译:以前的露天暴露克服了东pol碱抑制回避的失忆症

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摘要

The muscarinic cholinergic receptor (MAChR) blockade with scopolamine either extended or restricted to the hippocampus, before or after training in inhibitory avoidance (IA) caused anterograde or retrograde amnesia, respectively, in the rat, because there was no long-term memory (LTM) expression. Adult Wistar rats previously exposed to one or two open-field (OF) sessions of 3 min each (habituated), behaved as control animals after a weak though over-threshold training in IA. However, after OF exposure, IA LTM was formed and expressed in spite of an extensive or restricted to the hippocampus MAChR blockade. It was reported that during and after OF exposure and reexposure there was an increase in both hippocampal and cortical ACh release that would contribute to “prime the substrate,” e.g., by lowering the synaptic threshold for plasticity, leading to LTM consolidation. In the frame of the “synaptic tagging and capture” hypothesis, plasticity-related proteins synthesized during/after the previous OF could facilitate synaptic plasticity for IA in the same structure. However, IA anterograde amnesia by hippocampal protein synthesis inhibition with anisomycin was also prevented by two OF exposures, strongly suggesting that there would be alternative interpretations for the role of protein synthesis in memory formation and that another structure could also be involved in this “OF effect.”
机译:在抑制性回避(IA)训练前后,东碱对东extended碱的毒蕈碱胆碱能受体(MAChR)阻断作用扩展或限制在海马区,分别引起大鼠顺行性或逆行性健忘症,因为没有长期记忆(LTM) )表达。成年Wistar大鼠先前曾接受过一次或两次开放场(OF)训练,每场3分钟(习惯性),在IA中经过有限阈值训练,但经过微弱的训练后表现为对照动物。然而,在OF暴露后,尽管广泛或仅限于海马MAChR阻滞,仍形成并表达了IA LTM。据报道,在OF暴露和再暴露期间和之后,海马和皮质ACh释放均增加,这将有助于“灌注底物”,例如,通过降低可塑性的突触阈值,导致LTM巩固。在“突触标记和捕获”假设的框架内,在先前的OF中/之后合成的可塑性相关蛋白可以促进相同结构中IA的突触可塑性。但是,两次OF暴露也可以预防由Anisomycin抑制海马蛋白合成引起的IA顺行性失忆,强烈表明对于蛋白合成在记忆形成中的作用将有其他解释,并且另一种结构也可能与这种“ OF效应”有关。 。”

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