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The effects of in vitro application of purified botulinum neurotoxin at mouse motor nerve terminals.

机译:纯化的肉毒杆菌神经毒素在小鼠运动神经末梢的体外应用效果。

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摘要

1. Purified botulinum neurotoxin type A (10 nM) was applied in vitro to mouse diaphragm muscles. Intracellular micro-electrode recordings were made continuously in single fibres. 2. This treatment reduced end-plate potential (e.p.p.) amplitudes with a time to half-maximal effect of about 75 min at 22-25 degrees C. E.p.p. rise-times remained fast and unaffected by the toxin. 3. Miniature end-plate potential (m.e.p.p.) frequency was reduced by the toxin to less than 5% of control frequency, and followed a similar time course to the block of e.p.p. amplitudes. The m.e.p.p. rise-time and coefficient of variation (c.v.) of m.e.p.p. amplitude distributions both increased, but the time course of these increases lagged significantly behind the change in frequency. 4. A population of slow rise-time m.e.p.p.s was present in controls at low frequency. This population was found to be unaffected by the toxin. 5. The above-detailed in vitro changes could be explained by the toxin acting by a single common mechanism to inhibit the release process underlying both fast rise-time m.e.p.p.s and e.p.p.s. A distinct release process, which leads to slow rise-time m.e.p.p.s, was unaffected by the toxin.
机译:1.将纯化的A型肉毒杆菌神经毒素(10 nM)体外应用于小鼠diaphragm肌。在单根纤维中连续进行细胞内微电极记录。 2.该处理降低了终板电位(e.p.p.)幅度,在22-25℃下达到约75分钟的半最大作用的时间。上升时间保持快速且不受毒素影响。 3.毒素将微型终极板电位(m.e.p.p.)频率降低到控制频率的5%以下,并遵循与e.p.p.振幅。最高点m.e.p.p.的上升时间和变异系数(c.v.)振幅分布都增加了,但是这些增加的时间过程明显滞后于频率变化。 4.对照组中出现缓慢的上升时间m.e.p.p.s。发现该人群不受毒素影响。 5.上述详细的体外变化可以解释为毒素通过单一共同机制抑制快速上升时间m.e.p.p.s和e.p.p.s的释放过程。该毒素不受明显的释放过程的影响,该释放过程导致缓慢的m.e.p.p.s上升时间。

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