首页> 美国卫生研究院文献>The Journal of Physiology >Prolonged exposure to acetylcholine: noise analysis and channel inactivation in cat tenuissimus muscle.
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Prolonged exposure to acetylcholine: noise analysis and channel inactivation in cat tenuissimus muscle.

机译:长时间暴露于乙酰胆碱:猫腱膜肌肉的噪声分析和通道失活。

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摘要

1. Micro-electrodes were used to record membrane potential and associated noise at the end-plate region of cat tenuissimus muscle (37 degrees C), during applications of acetylcholine (ACh) in continuously flowing Krebs solution containing eserine and tetrodotoxin. 2. Densensitization was assessed from the frequency of channel opening calculated from the noise variance. 3. At higher concentrations of ACh (10-50 microM), desensitization occurred with an exponential fall to a plateau. 4. At low concentrations of ACh (1-2 microM) only slight desensitization occurred and at a much lower rate. Frequency of channel opening decreased at the rate of 0.045 +/- 0.024 min-1. Maximum frequency was (33 +/- 9) X 10(7)/sec while maximum depolarization was 20.5 +/- 1.4 mV (n = 11 cats). Depolarization was well maintained. 5. This slow rate of desensitization at low concentrations of ACh was confirmed in experiments where voltage clamped current, its associated noise, and miniature end-plate current amplitude were measured. 6. At low concentrations of ACh (1-2 microM) in the presence of eserine there was sustained block in neuromuscular transmission when twitch tension was measured. 8. It is concluded that the mechanism of neuromuscular block by ACh at around 1 microM concentration is by depolarization itself, not desensitization.
机译:1.在持续流动的含有色氨酸和河豚毒素的Krebs溶液中应用乙酰胆碱(ACh)的过程中,微电极用于记录腱猫(37°C)膜的电位和相关噪声。 2.通过根据噪声方差计算出的通道打开频率来评估脱敏。 3.在较高浓度的ACh(10-50 microM)中,发生脱敏并呈指数下降至平稳状态。 4.在低浓度的ACh(1-2 microM)中,仅发生轻微的脱敏,并且发生率低得多。通道打开的频率以0.045 +/- 0.024 min-1的速率降低。最大频率为(33 +/- 9)X 10(7)/秒,而最大去极化率为20.5 +/- 1.4 mV(n = 11猫)。去极化保持良好。 5.在低浓度的ACh中,这种缓慢的脱敏速率在实验中得到了证实,在该实验中,测量了电压钳制电流,其相关的噪声以及极小的端板电流幅度。 6.在存在色氨酸的情况下,在低浓度的ACh(1-2 microM)下,当测量抽搐张力时,神经肌肉传递持续受阻。 8.结论是ACh在大约1 microM浓度时对神经肌肉的阻滞机制是通过去极化本身而不是通过脱敏。

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