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正常、去神经支配以及长期注射A型肉毒杆菌毒素的青蛙神经肌肉接头处微小终板电位的比较。

A comparison of miniature end-plate potentials at normal, denervated, and long-term botulinum toxin type A poisoned frog neuromuscular junctions.

作者信息

Lupa M T, Yu S P

出版信息

Pflugers Arch. 1986 Nov;407(5):476-81. doi: 10.1007/BF00657503.

Abstract

The effects of denervation and long-term botulinum toxin type A (BoTx) poisoning on miniature end-plate potentials (m.e.p.p.s) in the frog were studied with intracellular microelectrode recording. BoTx reduced the frequency of m.e.p.p.s to less than 1% of the level seen in untreated frogs, leaving a large percentage of tiny m.e.p.p.s and slow-rising m.e.p.p.s (slow m.e.p.p.s). Unlike what is observed in the rat, the frequency of slow m.e.p.p.s never increased above the low rate measured in the untreated controls, and in fact slightly but significantly decreased after BoTx. A comparison of the m.e.p.p.s seen after BoTx poisoning (BoTx m.e.p.p.s) and m.e.p.p.s seen after denervation (Schwann m.e.p.p.s) revealed many similarities between the two including amplitude and time-to-peak distributions, temperature Q10 values and responses to several drugs and procedures. However, it was concluded that BoTx m.e.p.p.s do not originate from the Schwann cells because denervation of BoTx-paralysed frogs abolishes all m.e.p.p.s and the drug 4-aminoquinoline affects BoTx m.e.p.p.s and Schwann m.e.p.p.s in opposite ways, increasing the frequency of the former while almost eliminating the latter. BoTx m.e.p.p.s and Schwann m.e.p.p.s probably represent similar processes of secretion which are non-specific in nature, having a lower energy barrier than for normal release and not originating from specialized areas of transmitter release.

摘要

采用细胞内微电极记录法,研究了去神经支配和长期A型肉毒杆菌毒素(BoTx)中毒对青蛙微小终板电位(m.e.p.p.s)的影响。BoTx将m.e.p.p.s的频率降低至未处理青蛙所见水平的1%以下,留下很大比例的微小m.e.p.p.s和上升缓慢的m.e.p.p.s(缓慢m.e.p.p.s)。与在大鼠中观察到的情况不同,缓慢m.e.p.p.s的频率从未超过未处理对照组中测得的低频率,实际上在BoTx处理后略有但显著下降。比较BoTx中毒后所见的m.e.p.p.s(BoTx m.e.p.p.s)和去神经支配后所见的m.e.p.p.s(雪旺细胞m.e.p.p.s)发现,两者之间有许多相似之处,包括幅度和峰值时间分布、温度Q10值以及对几种药物和操作的反应。然而,得出的结论是,BoTx m.e.p.p.s并非源自雪旺细胞,因为对BoTx麻痹的青蛙进行去神经支配会消除所有m.e.p.p.s,并且药物4-氨基喹啉以相反的方式影响BoTx m.e.p.p.s和雪旺细胞m.e.p.p.s,增加前者的频率而几乎消除后者。BoTx m.e.p.p.s和雪旺细胞m.e.p.p.s可能代表了类似的分泌过程,这些过程本质上是非特异性的,具有比正常释放更低的能量屏障,且并非源自递质释放的特殊区域。

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