Song Ming-Ke, Cui Yong-Yao, Zhang Wei-Wei, Zhu Liang, Lu Yang, Chen Hong-Zhuan
Department of Pharmacology, Institutes of Medical Sciences, Shanghai Jiao Tong University School of Medicine, 280 South Chongqing Road, Shanghai 200025, PR China.
Neurosci Lett. 2009 Sep 11;461(1):25-9. doi: 10.1016/j.neulet.2009.05.042. Epub 2009 May 20.
A large amount of in vitro studies demonstrate suppression of M-current in hippocampal neurons by Kv7/M channel blocker results in depolarization of membrane potential and release of neurotransmitters, such as acetylcholine and glutamate, suggesting that Kv7/M channel may play important roles in regulating synaptic plasticity. In the present study, we examined the in vivo effect of Kv7/M channel inhibition on the long-term potentiation (LTP) induction at basal dendrites in hippocampal CA1 area of urethane-anaesthetized rats. The Kv7/M channel was inhibited by intraperitoneal injection of XE991 (10mg/kg) and the LTP of field excitatory postsynaptic potential (fEPSP) was induced by supra-threshold high frequency stimulation (S1 HFS). A weak protocol which was just below the threshold for evoking LTP was used as sub-threshold high frequency stimulation (S2 HFS). XE991 did not significantly alter the slope of fEPSP and the magnitude of LTP induced by S1 HFS, suggesting that Kv7/M channel inhibition had little or no effect on glutamatergic transmission under basal conditions. However, XE991 could make S2 HFS evoke LTP even after the application of the muscarinic cholinergic (mACh) receptor antagonist scopolamine, suggesting that Kv7/M channel inhibition lowered the threshold for LTP induction and the effect was independent of muscarinic activation. Based on the above findings, we concluded that the facilitating effect of XE991 on LTP induction is not mediated by its ability to enhance the release of acetylcholine; therefore, Kv7/M channel blockers may provide a therapeutic benefit to cholinergic deficiency-related cognitive impairment, e.g., Alzheimer's disease.
大量体外研究表明,Kv7/M通道阻滞剂抑制海马神经元中的M电流会导致膜电位去极化并释放神经递质,如乙酰胆碱和谷氨酸,这表明Kv7/M通道可能在调节突触可塑性中发挥重要作用。在本研究中,我们检测了Kv7/M通道抑制对氨基甲酸乙酯麻醉大鼠海马CA1区基底树突长时程增强(LTP)诱导的体内效应。通过腹腔注射XE991(10mg/kg)抑制Kv7/M通道,并通过阈上高频刺激(S1 HFS)诱导场兴奋性突触后电位(fEPSP)的LTP。将略低于诱发LTP阈值的弱刺激方案用作阈下高频刺激(S2 HFS)。XE991并未显著改变S1 HFS诱导的fEPSP斜率和LTP幅度,这表明在基础条件下,Kv7/M通道抑制对谷氨酸能传递几乎没有影响。然而,即使在应用毒蕈碱胆碱能(mACh)受体拮抗剂东莨菪碱后,XE991仍可使S2 HFS诱发LTP,这表明Kv7/M通道抑制降低了LTP诱导的阈值,且该效应与毒蕈碱激活无关。基于上述发现,我们得出结论,XE991对LTP诱导的促进作用并非由其增强乙酰胆碱释放的能力介导;因此,Kv7/M通道阻滞剂可能对胆碱能缺乏相关的认知障碍,如阿尔茨海默病,具有治疗益处。