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染料赤藓红B对青蛙神经肌肉接头处神经递质释放及神经末梢形态的影响

Neurotransmitter release and nerve terminal morphology at the frog neuromuscular junction affected by the dye Erythrosin B.

作者信息

Augustine G J, Levitan H

出版信息

J Physiol. 1983 Jan;334:47-63. doi: 10.1113/jphysiol.1983.sp014479.

Abstract
  1. The quantal release of neurotransmitter and the fine structure of frog neuromuscular junctions has been examined in the presence of the xanthene dye Erythrosin B.2. At concentrations of 10 muM or greater, Erythrosin B produced time- and dose-dependent increases in transmitter release from presynaptic nerve terminals.3. Miniature end-plate potential (m.e.p.p.) frequency increased in an exponential manner during continuous exposure to the dye. The rate constant for this exponential was dose-dependent, increasing with concentrations from 10 muM to 1 mM.4. The amplitude of evoked end-plate potentials (e.p.p.s) also increased exponentially during dye treatment, primarily due to an increase in quantal content. Rate constants for this effect were also dose-dependent, and were approximately 1/5 as large as those for m.e.p.p.s.5. While the frequency of m.e.p.p.s was increasing, their amplitude distribution did not qualitatively change. Thus the dye has little effect on the size of individual quanta.6. The presynaptic effects of Erythrosin B were irreversible under these experimental conditions. Brief exposure to the dye caused increases in m.e.p.p. frequency and e.p.p. amplitude which were maintained at steady levels during extensive rinsing with dye-free Ringer solution.7. Prolonged exposure to the dye caused an eventual decrease in m.e.p.p. frequency and abolition of e.p.p.s. Coincident with this decline ;giant' m.e.p.p.s as large as 40 mV were observed.8. At dye concentrations greater than approximately 200 muM, Erythrosin B rapidly and reversibly increased the membrane potential and input resistance of muscle fibres. This post-synaptic effect was small and variable in normal saline, but was pronounced in low potassium solutions.9. During the period that release was enhanced by Erythrosin B, presynaptic nerve terminals contained the normal complement of synaptic vesicles and other organelles. Mitochondria were swollen in this condition.10. After m.e.p.p. frequency declined below normal levels and ;giant' m.e.p.p.s appeared, the number of synaptic vesicles within nerve terminals declined and dilated cisternae were present. Mitochondria were swollen further.11. These results do not reveal any mechanism to explain the ability of Erythrosin B to increase transmitter release, but the decline in release may be caused by partial depletion of synaptic vesicles. The ;giant' m.e.p.p.s could be due to the discharge of acetylcholine from cisternae.
摘要
  1. 在呫吨染料赤藓红B存在的情况下,研究了神经递质的量子释放以及青蛙神经肌肉接头的精细结构。

  2. 当浓度达到10μM或更高时,赤藓红B使突触前神经末梢释放递质呈现出时间和剂量依赖性增加。

  3. 在持续暴露于该染料期间,微小终板电位(m.e.p.p.)频率呈指数方式增加。此指数的速率常数呈剂量依赖性,随浓度从10μM增加到1mM而增大。

  4. 在染料处理期间,诱发终板电位(e.p.p.s)的幅度也呈指数增加,主要是由于量子含量增加。这种效应的速率常数同样呈剂量依赖性,约为微小终板电位速率常数的1/5。

  5. 虽然微小终板电位的频率在增加,但其幅度分布没有定性变化。因此,该染料对单个量子的大小影响很小。

  6. 在这些实验条件下,赤藓红B的突触前效应是不可逆的。短暂暴露于该染料会使微小终板电位频率和终板电位幅度增加,在用无染料的林格氏液大量冲洗期间,这些增加维持在稳定水平。

  7. 长时间暴露于该染料最终会导致微小终板电位频率下降和终板电位消失。与此下降同时发生的是,观察到高达40mV的“巨大”微小终板电位。

  8. 当染料浓度大于约200μM时,赤藓红B迅速且可逆地增加肌肉纤维的膜电位和输入电阻。这种突触后效应在生理盐水中较小且多变,但在低钾溶液中很明显。

  9. 在赤藓红B增强释放的期间,突触前神经末梢含有正常数量的突触小泡和其他细胞器。在此条件下线粒体肿胀。

  10. 在微小终板电位频率降至正常水平以下且出现“巨大”微小终板电位后,神经末梢内的突触小泡数量减少,出现扩张的池。线粒体进一步肿胀。

  11. 这些结果未揭示任何机制来解释赤藓红B增加递质释放的能力,但释放的下降可能是由于突触小泡部分耗尽所致。“巨大”微小终板电位可能是由于乙酰胆碱从池中释放所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0580/1197299/af1b3289b9bc/jphysiol00666-0076-a.jpg

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