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在高频神经刺激时神经肌肉接头处乙酰胆碱量子释放的动力学。

Kinetics of acetylcholine quanta release at the neuromuscular junction during high-frequency nerve stimulation.

机构信息

Laboratory of Biophysics of Synaptic Processes, Kazan Institute of Biochemistry and Biophysics, Kazan Scientific Center of RAS, Lobachevski Str., 2/31 420111, Kazan, Russia Kazan State Medical University, Kazan, Russia.

出版信息

Eur J Neurosci. 2010 Nov;32(9):1480-9. doi: 10.1111/j.1460-9568.2010.07430.x. Epub 2010 Oct 7.

Abstract

The effects of high-frequency nerve stimulation (10-100 Hz) on the kinetics of evoked acetylcholine quanta secretion from frog motor nerve endings were studied. The amplitude and temporal parameters of uni- and multiquantal endplate currents were analysed to estimate the possible changes in the degree of synchrony of quantal release. The frog neuromuscular synapse is unusually long and we have placed special emphasis on evaluating the velocity of propagation of excitation along the nonmyelinated nerve ending as this might influence the synchrony of release from the whole terminal and hence affect the time course of postsynaptic currents. The data show that high-frequency firing leads to the desynchronization of acetylcholine release from motor nerve endings governed by at least two independent factors, namely a reduction of nerve pulse propagation velocity in the nonmyelinated parts of the axon and a change of secretion kinetics at single active zones. A computer reconstruction of the multiquantal synaptic response was performed to estimate any contribution of each of the above factors to the total rate of release and amplitude and time characteristics of the endplate currents. The results indicate that modification of the kinetics of neurotransmitter quanta release during high-frequency firing should be taken into account when mechanisms underlying the plasticity of chemical synapses are under investigation.

摘要

研究了高频神经刺激(10-100 Hz)对青蛙运动神经末梢诱发乙酰胆碱量子释放动力学的影响。分析了单量子和多量子终板电流的幅度和时程参数,以估计量子释放同步性的可能变化。青蛙的神经肌肉突触非常长,我们特别强调评估兴奋沿无髓神经末梢的传播速度,因为这可能影响整个末端释放的同步性,并影响突触后电流的时程。数据表明,高频放电导致运动神经末梢乙酰胆碱释放的去同步化,这至少由两个独立的因素决定,即轴突无髓部分神经脉冲传播速度的降低和单个活动区分泌动力学的改变。对多量子突触反应进行了计算机重建,以估计上述每个因素对总释放率以及终板电流幅度和时程特征的贡献。结果表明,在研究化学突触可塑性的机制时,应考虑高频放电期间神经递质量子释放动力学的改变。

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