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首页> 外文期刊>Behavioural Brain Research: An International Journal >Behavioral and electrophysiological studies of chronic oral administration of L-type calcium channel blocker verapamil on learning and memory in rats.
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Behavioral and electrophysiological studies of chronic oral administration of L-type calcium channel blocker verapamil on learning and memory in rats.

机译:长期口服L型钙通道阻滞剂维拉帕米对大鼠学习和记忆的行为和电生理研究。

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It has been shown that L-type voltage dependent calcium channels (VDCCs) have important role in learning and memory. In vivo and in vitro electrophysiological recordings of hippocampal neurons have demonstrated their involvement in long-term potentiation (LTP), which considers being one possible cellular mechanism underlying learning and memory. The long-term effect of VDCCs of hippocampal dentate gyrus (DG) so far on synaptic plasticity has not received much attention. In this study, the effect of chronic (60 days) oral administration of L-type calcium channel blocker verapamil on learning and memory and synaptic plasticity of hippocampal dentate gyrus in rats has been investigated. L-type calcium channel antagonist, verapamil chronically and orally at different doses (10, 20 and 50 mg/kg) was used to investigate learning and memory by passive avoidance learning. LTP in perforant-DG synapses was assessed (by either 200 or 400 Hz tetanization) in order to investigate long-term effect of verapamil on synaptic plasticity. In this case, field excitatory postsynaptic potential (fEPSP) slope and population spike (PS) amplitude were measured. Our behavioral study has shown that chronic oral treatment of verapamil has no effect on learning whereas verapamil (50 mg/kg) decreased memory retrieval. Verapamil (20 and 50 mg/kg) inhibited EPSP-LTP induction at 400 Hz but not at 200 Hz tetanization. Furthermore, only verapamil (50mg/kg) decreased PS-LTP with respect to control group. These data suggest that 400 Hz LTP is required for activation of L-type VDCCs and it seems that verapamil is more effective on L-type calcium channels of DG dendrites than their soma.
机译:已经表明,L型电压依赖性钙通道(VDCC)在学习和记忆中具有重要作用。海马神经元的体内和体外电生理记录已证明它们参与了长期增强(LTP),长期增强被认为是学习和记忆的一种可能的细胞机制。到目前为止,海马齿状回(DG)VDCC对突触可塑性的长期影响尚未引起足够的重视。在这项研究中,研究了长期(60天)口服L型钙通道阻滞剂维拉帕米对大鼠海马齿状回学习和记忆及突触可塑性的影响。长期和口服不同剂量(10、20和50 mg / kg)的维拉帕米L型钙通道拮抗剂被用于通过被动回避学习来研究学习和记忆。为了研究维拉帕米对突触可塑性的长期影响,对穿孔的DG突触中的LTP进行了评估(通过200或400 Hz的鞣制)。在这种情况下,测量了田间兴奋性突触后电位(fEPSP)斜率和种群峰值(PS)幅度。我们的行为研究表明,长期口服维拉帕米对学习没有影响,而维拉帕米(50 mg / kg)会降低记忆力。维拉帕米(20和50 mg / kg)在400 Hz时抑制EPSP-LTP诱导,但在200 Hz的钛化下则不。此外,相对于对照组,仅维拉帕米(50mg / kg)降低PS-LTP。这些数据表明,激活L型VDCC需要400 Hz LTP,似乎维拉帕米对DG树突的L型钙通道比其体细胞更有效。

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