Khanin R, Parnas H, Segel L
Department of Applied Mathematics and Computer Science, Weizmann Institute of Science, Rehovot, Israel.
Biophys J. 1994 Sep;67(3):966-72. doi: 10.1016/S0006-3495(94)80562-4.
In the present work we show that diffusion cannot provide the observed fast discharge of neurotransmitter from a synaptic vesicle during neurotransmitter release, mainly because it is not sufficiently rapid nor is it sufficiently temperature-dependent. Modeling the discharge from the vesicle into the cleft as a continuous point source, we have determined that discharge should occur in 50-75 microseconds, to provide the observed high concentrations of transmitter at the critical zone.
在本研究中,我们表明,在神经递质释放过程中,扩散无法实现从突触小泡中观察到的神经递质快速释放,主要原因是其速度不够快,且对温度的依赖性也不够强。将从突触小泡向突触间隙的释放模拟为连续点源,我们已经确定释放应在50 - 75微秒内发生,以便在关键区域提供观察到的高浓度递质。