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首页> 外文期刊>Japanese Journal of Pharmacology >Aconitine-Induced Increase and Decrease of Acetylcholine Release in the Mouse Phrenic Nerve-Hemidiaphragm Muscle Preparation
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Aconitine-Induced Increase and Decrease of Acetylcholine Release in the Mouse Phrenic Nerve-Hemidiaphragm Muscle Preparation

机译:乌头碱诱导的小鼠ren神经-半-肌制备中乙酰胆碱释放的增加和减少

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摘要

References(17) Cited-By(5) The effect of aconitine on acetylcholine (ACh) release from motor nerve terminals in the mouse phrenic nerve-diaphragm muscle preparation was studied by a radioisotope method. Both electrical stimulation-evoked release and spontaneous release of 3H-ACh from the preparation preloaded with 3H-choline were measured. The change in the muscle tension was simultaneously recorded in the same preparation. Aconitine (0.1 μM) increased electrically evoked 3H-ACh release, while at higher concentrations (0.3-3 μM) it decreased the evoked release and muscle tension. High concentrations of aconitine (3-30 μM) caused a concentration-dependent increase in spontaneous 3H-ACh release. All these effects were suppressed by tetrodotoxin. The aconitine-induced spontaneous release consisted of two different components: a Ca2+-dependent phasic release that was inactivated within a few minutes and a Ca2+-independent, long lasting release at a low level. The depression of the Ca2+-dependent quantal release seems attributable to the decline of Ca2+ influx into the nerve rather than inactivation of sodium channels. We conclude that aconitine increases and then decreases electrical stimulation-evoked ACh release from the motor nerve through prolonged activation of sodium channels. Further activation of the channels enhances spontaneous release and the subsequent complete inactivation of the quantal release may be due to block of Ca2+ influx.
机译:参考文献(17)(5)用放射性同位素方法研究了乌头碱对小鼠神经-肌制备物中运动神经末梢乙酰胆碱(ACh)释放的影响。从预装有3H胆碱的制剂中测量3H-ACh的电刺激诱发释放和自发释放。在相同的制剂中同时记录了肌肉张力的变化。乌头碱(0.1μM)增加了电诱发的3H-ACh释放,而更高的浓度(0.3-3μM)则降低了诱发的释放和肌肉张力。高浓度乌头碱(3-30μM)导致自发3H-ACh释放的浓度依赖性增加。所有这些作用都被河豚毒素所抑制。乌头碱诱导的自发释放包括两个不同的成分:在几分钟内被灭活的依赖于Ca2 +的阶段性释放和在低水平下不依赖于Ca2 +的长期释放。依赖于Ca2 +的定量释放的降低似乎是由于Ca2 +流入神经的减少而不是钠通道的失活。我们得出的结论是,乌头碱会通过延长钠通道的激活来增加然后降低电刺激诱发的乙酰胆碱酯从运动神经中释放。通道的进一步激活增强了自发释放,而随后的定量释放完全失活可能是由于Ca2 +流入的阻滞。

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