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Effects of enhanced activity on synaptic transmission in mouse extensor digitorum longus muscle.

机译:增强的活动对小鼠指趾长肌的突触传递的影响。

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摘要

1. Transmitter release at neuromuscular junctions of extensor digitorum longus (EDL) muscle in mice was studied after 2-8 month periods of unforced running in wheels. 2. Intracellular recordings at 10 Hz stimulation revealed that the quantal content of endplate potentials (EPPs) in Mg(2+)-blocked preparations was larger by 30% in trained (mean number of quanta, m = 1.75 +/- 0.19, n = 7) than in untrained control EDL muscles (m = 1.35 +/- 0.35, n = 7). Similarly the amplitudes of the first, maximum and plateau EPPs during tetanic stimulation (100 Hz for 1 s or 400 ms) in curare-blocked preparations were increased by 28% each; muscle fibre diameters did not differ while other postsynaptic effects were not excluded. 3. Training effects became particularly evident in two pairs of monozygotic twins, in which the time courses of facilitation and depression were changed as well: at 100 Hz stimulation the maximum EPP amplitude was reached on average at 2.6 impulses in controls but at 2.0 impulses in runners, and the following decline below the value of the first EPP at 5.0 and 3.8 impulses respectively. 4. Block resistance, as monitored by isometric tension measurements in different presynaptic (Mg2+) and postsynaptic (curare) blocking solutions, was higher in trained than in control EDL muscles. Depression in a train of four nerve-evoked single twitches at 2 Hz was lower. 5. As expected from the unchanged fibre diameters (see above) isometric tetanic force was similar in trained and control EDL muscles. Muscle fatigue resistance was larger in trained animals and succinic dehydrogenase activity was higher in fibres of trained muscles indicating an endurance training of the EDL muscle. 6. It is concluded that besides changes in muscle fibre properties, prolonged elevated activity causes increased transmitter release in EDL muscles. As a consequence, the safety margin of transmission in trained EDL muscles is markedly elevated.
机译:1.研究了在无压力的车轮行驶2-8个月后,小鼠长指伸肌(EDL)肌肉神经肌肉交界处的递质释放。 2.在10 Hz刺激下的细胞内记录显示,在受过训练的Mg(2+)阻断的制剂中,终板电位(EPP)的定量含量要大30%(均方根数,m = 1.75 +/- 0.19,n = 7),而不是未经训练的对照EDL肌肉(m = 1.35 +/- 0.35,n = 7)。类似地,在咖喱阻塞的制剂中,强直刺激(100 Hz持续1 s或400 ms)期间,第一,最大和平稳EPP的幅度分别增加了28%。肌肉纤维直径无差异,但不排除其他突触后作用。 3.训练效果在两对单卵双生双胞胎中尤为明显,在双卵双生双胞胎中,促进和抑制的时程也发生了变化:在100 Hz刺激下,对照组的最大EPP振幅平均为2.6脉冲,而在对照组为2.0脉冲跑步者,其后分别下降到第一个EPP值5.0和3.8脉冲。 4.在不同的突触前(Mg2 +)和突触后(curare)阻滞溶液中,通过等轴测张力测量监测到的阻滞阻力,在训练中比在对照EDL肌肉中更高。在4 Hz的神经诱发的四次抽搐的训练中,抑郁感降低了。 5.正如从不变的纤维直径(见上文)所预期的那样,在训练和控制的EDL肌肉中,等距强直作用力相似。受过训练的动物的肌肉疲劳抵抗力较大,受过训练的肌肉的纤维中的琥珀酸脱氢酶活性较高,表明对EDL肌肉的耐力训练。 6.结论是,除了肌肉纤维特性发生变化外,延长的活动时间延长还会导致EDL肌肉中递质的释放增加。结果,受过训练的EDL肌肉中传输的安全裕度显着提高。

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