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Effects of 5-HT3 receptor antagonism on hippocampal theta rhythm memory and LTP induction in the freely moving rat

机译:5-HT3受体拮抗作用对自由运动大鼠海马θ节律记忆和LTP诱导的影响

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摘要

Serotonergic brainstem projections to hippocampus are thought to preferentially target and increase, via 5-HT3 receptors, the excitability of a distinct subpopulation of interneurons that primarily regulate GABAB-mediated inhibition in the dendritic region of pyramidal cells. Hippocampal slice work suggests that the between-burst hyperpolarization caused by slow (GABAB) IPSPs plays a significant role in controlling the strength of LTP induced with theta burst stimulation. According to the above observations it was assumed that blockade of hippocampal 5-HT3 receptors should reduce the hyperpolarization and thereby enhance both the frequency of the naturally occurring theta rhythm and the induction of LTP; moreover, if LTP-like mechanisms provide the substrate for certain forms of memory, such treatment was expected to facilitate learning. Each of the above predictions was tested and confirmed in the present set of experiments. The effects of ondansetron, a potent and selective antagonist of the 5- HT3 receptor, were examined on (1) frequency of the hippocampal theta rhythm, (2) induction of LTP in field CA1 of freely moving rats, and (3) retention of olfactory and spatial memory in tasks known to depend on an intact hippocampus. When injected intraperitoneally into freely moving rats, the drug reliably and significantly increased the frequency of the hippocampal theta rhythm in a dose-dependent manner. Second, at concentrations that facilitate theta frequency (100 micrograms/kg and 500 micrograms/kg), an injection of the drug 30 min prior to delivering electrical stimulation bursts significantly increased the magnitude and duration of LTP compared to that obtained in the same animals after vehicle injections.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:据认为,对海马的血清素能脑干投射优先通过5-HT3受体靶向并增加不同的中间神经元亚群的兴奋性,这些神经元主要调节锥体细胞在树突状区域的GABA A介导的抑制作用。海马切片工作表明,慢速(GABAB)IPSP引起的爆发间超极化在控制由theta爆发刺激诱导的LTP强度中起着重要作用。根据上述观察结果,认为海马5-HT3受体的阻断应减少超极化,从而增加自然发生的θ节律的频率和LTP的诱导。此外,如果类似LTP的机制为某些形式的记忆提供了基础,则预期这种处理将有助于学习。以上每个预测均在本组实验中进行了测试和确认。在(1)海马theta节律的频率,(2)自由活动大鼠场CA1中LTP的诱导以及(3)保留在已知依赖于完整海马体的任务中的嗅觉和空间记忆。当将腹膜内注射到自由运动的大鼠中时,该药物以剂量依赖的方式可靠且显着地增加了海马θ节律的频率。其次,在促进theta频率的浓度(100微克/千克和500微克/千克)下,与电刺激后的相同动物相比,在电刺激爆发前30分钟注射药物显着增加了LTP的强度和持续时间车辆注射(摘要截断为250个字)

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