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Dual effects of ether on end-plate currents.

机译:醚对端板电流的双重影响。

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摘要

1. The effects of diethyl ether (ether) on miniature end-plate currents (m.e.p.c.s) and on acetylcholine-activated end-plate channels were measured in toad sartorius muscle fibres with voltage-clamp and extracellular recording techniques. 2. At low concentrations (less than 20 mM) either made m.e.p.c.s decay faster than normal. At high concentrations (greaster than 40 mM), the decay of m.e.p.c.s was slower than normal. With all concentrations, the cecay remained exponential with single time constant, tau D. 3. At low concentrations ether did not affect the growth phase of m.e.p.c.s and only slightly reduced the amplitude of m.e.p.c.s. At the higher concentrations, the growth phase was slowed and m.e.p.c.s were significantly reduced in amplitude. 4. Ether at all concentrations (5--70 mM) reduced end-plate channel lifetime, the effect increasing with ether concentration. Ether did not significantly alter the elementary channel conductance or the actylcholine null (reversal) potential. 5. Curare reduced tau D which had been prolonged by high concentrations of ether. Ether itself at high concentrations caused a reduction in tau D increased by neostigmine. It is proposed that high concentrations of either inhibit acetylcholine hydrolysis by acetylcholinesterase. 6. The effect of ether in reducing end-plate channel lifetime and reducing m.e.p.c. amplitude, without significantly altering the normal voltage and temperature sensitivity of channel lifetime, is consistent with the proposal that either reduces the stability of open end-plate channels.
机译:1.用电压钳和细胞外记录技术测量蟾蜍sartorius肌纤维中二乙醚(醚)对微型终板电流(m.e.p.c.s)和乙酰胆碱活化终板通道的影响。 2.在低浓度(小于20 mM)下,两者的m.e.p.c.s衰减都比正常情况快。在高浓度(大于40 mM)下,m.e.p.c.s的衰减比正常情况慢。在所有浓度下,cecay都保持单一时间常数tau D的指数。3.在低浓度下,乙醚不会影响m.e.p.c.s的生长期,只会稍微降低m.e.p.c.s的幅度。在较高浓度下,生长期减慢,m.e.p.c.s的幅度明显降低。 4.所有浓度(5--70 mM)的醚都会缩短终板通道的寿命,其效果随醚浓度的增加而增加。醚没有显着改变基本通道电导或乙酰胆碱无效(逆向)电势。 5. Curare降低了tau D,而tau D因高浓度的乙醚而延长。高浓度醚本身导致新斯的明增加的tau D减少。提出高浓度的任一种均可抑制乙酰胆碱酯酶对乙酰胆碱的水解。 6.醚在减少终板通道寿命和降低m.e.p.c方面的作用。在不显着改变通道寿命的正常电压和温度灵敏度的情况下,其幅度与降低开放端板通道稳定性的提议是一致的。

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