Colméus C, Gomez S, Molgó J, Thesleff S
Proc R Soc Lond B Biol Sci. 1982 Apr 22;215(1198):63-74. doi: 10.1098/rspb.1982.0028.
Amplitudes and times to peak of spontaneous miniature endplate potentials (m.e.p.ps) and evoked quantal endplate potentials (e.p.ps) were compared at normal, regenerating and botulinum toxin poisoned neuromuscular junctions of the extensor digitorum longus muscle of the rat. At normal junctions the mean time to peak of m.e.p.ps was longer and more variable than that of similar-sized e.p.ps. At endplates where nerve regeneration was induced by mechanical crushing of the motor nerve the frequency of m.e.p.ps was reduced and their amplitude distribution was broader than normal. The distribution of times to peak of m.e.p.ps was considerably broader than that of quantal e.p.ps recorded at the same endplates. At neuromuscular junctions poisoned with botulinum toxin type A, spontaneous and evoked transmitter release were greatly reduced. The amplitude distribution of m.e.p.ps was wider than that of e.p.ps and the time to peak of e.p.ps was about twice as fast as and less variable than that of m.e.p.ps. To explain the observed differences in time to peak among m.e.p.ps and between m.e.p.ps and quantal e.p.ps we suggest that some m.e.p.ps, but not e.p.ps, originate from transmitter quanta released from sites at a greater distance from postsynaptic receptors or that the release or diffusion process for acetylcholine is more prolonged when producing some of the m.e.p.ps. Such mechanisms produce at normal junctions a small population of m.e.p.ps with prolonged times to peak, at regenerating junctions a greater proportion of such m.e.p.ps and in botulinum toxin poisoning a majority.
在大鼠趾长伸肌的正常、再生以及肉毒杆菌毒素中毒的神经肌肉接头处,比较了自发微小终板电位(m.e.p.ps)和诱发量子化终板电位(e.p.ps)的幅度及达到峰值的时间。在正常接头处,m.e.p.ps达到峰值的平均时间比大小相似的e.p.ps更长且更具变异性。在通过机械挤压运动神经诱导神经再生的终板处,m.e.p.ps的频率降低,其幅度分布比正常情况更宽。m.e.p.ps达到峰值的时间分布比在同一终板记录的量子化e.p.ps的分布宽得多。在A型肉毒杆菌毒素中毒的神经肌肉接头处,自发和诱发的递质释放大大减少。m.e.p.ps的幅度分布比e.p.ps更宽,e.p.ps达到峰值的时间比m.e.p.ps快约两倍且变异性更小。为了解释在m.e.p.ps之间以及m.e.p.ps与量子化e.p.ps之间观察到的达到峰值时间的差异,我们认为一些m.e.p.ps(但不是e.p.ps)源自从距离突触后受体更远的位点释放的递质量子,或者在产生一些m.e.p.ps时乙酰胆碱的释放或扩散过程更持久。在正常接头处,这些机制产生一小部分达到峰值时间延长的m.e.p.ps;在再生接头处,此类m.e.p.ps的比例更大;在肉毒杆菌毒素中毒时,此类m.e.p.ps占大多数。