Liu Zhi, Otsu Yo, Vasuta Cristina, Nawa Hiroyuki, Murphy Timothy H
Kinsmen Laboratory and Brain Research Centre, University of British Columbia, Vancouver, British Columbia, Canada.
J Neurophysiol. 2007 Aug;98(2):581-93. doi: 10.1152/jn.00768.2006. Epub 2007 Jun 6.
Stimulation of presynaptic nicotinic acetylcholine receptors (nAChRs) increases the frequency of miniature excitatory synaptic activity (mEPSCs) to a point where they can promote cell firing in hippocampal CA3 neurons. We have evaluated whether nicotine regulation of miniature synaptic activity can be extended to inhibitory transmission onto striatal medium spiny projection neurons (MSNs) in acute brain slices. Bath application of micromolar nicotine typically induced 12-fold increases in the frequency of miniature inhibitory synaptic currents (mIPSCs). Little effect was observed on the amplitude of mIPSCs or mEPSCs under these conditions. Nicotine stimulation of mIPSCs was dependent on entry of extracellular calcium because removal of calcium from perfusate was able to block its action. To assess the potential physiological significance of the nicotine-stimulated increase in mIPSC frequency, we also examined the nicotine effect on evoked IPSCs (eIPSCs). eIPSCs were markedly attenuated by nicotine. This effect could be attributed to two potential mechanisms: transmitter depletion due to extremely high mIPSC rates and/or a reduction in presynaptic excitability associated with nicotinic depolarization. Treatment with low concentrations of K(+) was able to in part mimic nicotine's stimulatory effect on mIPSCs and inhibitory effect on eIPSCs. Current-clamp recordings confirmed a direct depolarizing action of nicotine that could dampen eIPSC activity leading to a switch to striatal inhibitory synaptic transmission mediated by tonic mIPSCs.
刺激突触前烟碱型乙酰胆碱受体(nAChRs)可增加微小兴奋性突触活动(mEPSCs)的频率,达到足以促进海马CA3神经元放电的程度。我们评估了烟碱对微小突触活动的调节是否可扩展至急性脑片中纹状体中型多棘投射神经元(MSNs)上的抑制性突触传递。浴灌微摩尔浓度的烟碱通常会使微小抑制性突触电流(mIPSCs)的频率增加12倍。在此条件下,未观察到对mIPSCs或mEPSCs幅度有明显影响。烟碱对mIPSCs的刺激作用依赖于细胞外钙的内流,因为从灌流液中去除钙能够阻断其作用。为评估烟碱刺激引起的mIPSC频率增加的潜在生理学意义,我们还检测了烟碱对诱发抑制性突触电流(eIPSCs)的影响。烟碱可使eIPSCs显著减弱。这种效应可能归因于两种潜在机制:极高的mIPSC频率导致递质耗竭和/或与烟碱去极化相关的突触前兴奋性降低。用低浓度的K(+)处理能够部分模拟烟碱对mIPSCs的刺激作用以及对eIPSCs的抑制作用。电流钳记录证实了烟碱的直接去极化作用,该作用可减弱eIPSC活动,导致向由持续性mIPSCs介导的纹状体抑制性突触传递转变。