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Ionic properties of the neuromuscular junction of the frog: effects of denervation and pH

机译:青蛙神经肌肉接头的离子性质:去神经作用和pH值的影响

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摘要

1. The effects of denervation, reinnervation and pH on the ionic permeability changes mediated by junctional receptors have been studied in muscle fibres of the frog sartorius.2. The reversal potential of acetylcholine responses in denervated junctions was about 25 mV more negative than in normal junctions.3. The delay of the change in the ionic properties of junctional receptors was proportional to the nerve stump length: 10 and 14 days for lengths of 12 and 33 mm, respectively.4. When the motor nerve reinnervates the junction, the reversal potential of the acetylcholine responses comes back to the normal value before the neuromuscular transmission is restored.5. The Na/K conductance change decreases in high pH solutions. After denervation, the pH profile of this ratio is shifted to the acid values by about two pH units.6. These observations can be explained by assuming that the Na and K channels differ by the pK of their anionic groups and that the denervation induces an alteration of the sites that bear the charges.
机译:1.研究了去神经,再神经化和pH对结节蛙肌肉纤维中连接受体介导的离子通透性变化的影响。2。失神经连接处的乙酰胆碱反应的逆电位比正常连接处的负电位高约25 mV。3。连接受体离子特性变化的延迟与神经残端长度成正比:长度分别为12和33 mm分别为10天和14天。4。当运动神经重新接合神经节时,乙酰胆碱反应的反向电位在恢复神经肌肉传递之前回到正常值。5。在高pH溶液中,Na / K电导率变化减小。去神经后,该比例的pH值曲线向酸值移动了大约两个pH单位6。可以通过假设Na和K通道的阴离子基团的pK值不同以及去神经化作用引起带有电荷的位点发生变化来解释这些发现。

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