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Pre- and post-synaptic actions of botulinum toxin at the rat neuromuscular junction.

机译:肉毒杆菌毒素在大鼠神经肌肉连接处的突触前和突触后作用。

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摘要

1. Extensor digitorum longus muscles of rats were paralysed with local, non-lethal doses of botulinum toxin Type A (BoTx). At 2 and 7 days after toxin injection, the nerve-muscle preparations were excised and end-plate currents analysed at 23 degrees C by dual-micro-electrode voltage clamp. 2. At 2 days after BoTx injection, the growth time of miniature end-plate currents (m.e.p.c.s) increased from a rather narrow range with a mean of 0.59 to a mean of 1.35 ms with a large variability between m.e.p.c.s. End-plate currents (e.p.c.s) were reduced compared to unpoisoned muscle. The decay phase of m.e.p.c.s and e.p.c.s, the growth phase of e.p.c.s and the voltage sensitivity of m.e.p.c.s were unchanged. 3. At 7 days after BoTx injection, the findings were similar to 2 days except that the time constant of the decay phase of m.e.p.c.s. and e.p.c.s. was about twice a long as normal and that the voltage sensitivity of m.e.p.c.s was increased. 4. The acetylcholine null potential (about 0 mV) was unchanged after treatment with BoTx. 5. The increase in the growth time of m.e.p.c.s compared to e.p.c.s following the injection of BoTx suggests that the poisoning, besides blocking quantal release, affects the time course of spontaneous but not that of evoked release. After BoTx poisoning the trans-synaptic diffusion of a majority of spontaneously released transmitter quanta seems to occur more slowly or from areas more distant from the highest concentration of the post-synaptic receptor than that of evoked release. 6. The increase in the decay phase of m.e.p.c.s and e.p.c.s and its increased voltage sensitivity observed in muscles poisoned for 7 days with BoTx suggest that appearance at the end-plate of a population of new receptors with a prolonged ion channel opening time similar to that previously described for extrajunctional receptors after denervation and for junctional receptors during development.
机译:1.用局部非致命剂量的A型肉毒毒素(BoTx)使大鼠的趾长伸肌麻痹。注射毒素后第2天和第7天,切除神经肌肉制剂,并通过双微电极电压钳在23摄氏度下分析终板电流。 2. BoTx注射后第2天,微型端板电流(m.e.p.c.s)的生长时间从平均范围0.59的较窄范围增加到平均1.35 ms,并且在m.e.p.c.s之间存在较大差异。与未中毒的肌肉相比,终板电流(e.p.c.s)降低了。 m.e.p.c.s和e.p.c.s的衰减阶段,e.p.c.s的生长阶段和m.e.p.c.s的电压灵敏度均未改变。 3. BoTx注射后7天,除m.e.p.c.s.衰变阶段的时间常数外,结果与2天相似。和e.p.c.s.大约是正常时间的两倍,并且提高了m.e.p.c.s的电压灵敏度。 4.用BoTx处理后,乙酰胆碱无效电位(约0 mV)未改变。 5. BoTx注射后m.e.p.c.s的生长时间比e.p.c.s的增加表明,中毒除了阻止定量释放外,还影响自发释放的时间,但不影响诱发释放的时间。 BoTx中毒后,大多数自发释放的递质的反式突触扩散似乎比诱发释放的速度更慢或发生在距突触后受体最高浓度较远的区域。 6.在BoTx毒死7天的肌肉中,观察到mepcs和epcs衰变阶段的增加及其对电压的敏感性增加,这表明出现在一组新受体末端板上的离子通道开放时间延长,类似于先前描述过的去神经后的结外受体和发育过程中的结膜受体。

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