首页> 美国卫生研究院文献>The Journal of Physiology >Neuromuscular transmission at newly formed neuromuscular junctions in the regenerating soleus muscle of the rat.
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Neuromuscular transmission at newly formed neuromuscular junctions in the regenerating soleus muscle of the rat.

机译:在大鼠再生比目鱼肌中新形成的神经肌肉接头处的神经肌肉传递。

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摘要

1. A study of neuromuscular function in regenerating skeletal muscle fibres in the rat soleus muscle has been made. The muscle fibres were damaged in vivo by the injection of the myotoxic venom component notexin, and then allowed to regenerate spontaneously. 2. Regenerating muscle fibres generated action potentials and contracted following direct intracellular stimulation as early as 4 days after the injection of notexin. 3. Miniature endplate potentials (MEPPs) were recorded at a minority of synapses at 3 days, and from all synapses by 5 days. The mean amplitude of MEPPs in a given fibre was directly proportional to muscle fibre input resistance. 4. Spontaneous transmitter release in the regenerating fibres was relatively insensitive to changes in [K+]0 but the effect of Ruthenium Red on spontaneous release was similar in the regenerating and control muscle fibres. 5. Functional innervation, defined as the ability to generate an indirect action potential, was restored in 97% of fibres by 10 days. The generation of an action potential was always associated with a twitch of the muscle fibre. Those fibres that were unable to generate an action potential usually exhibited a low membrane potential (ca -50 mV). These fibres could generate action potentials if they were hyperpolarized using an intracellular current-passing microelectrode. 6. The quantal content of endplate potentials (EPPs) was estimated from the mean EPP and mean MEPP amplitudes in cut muscle fibre preparations. These estimates suggested that quantal content was low at the earliest stages of regeneration, but increased as the muscle fibres matured and became normal at 10-21 days. 7. During repetitive stimulation at 30 Hz there was a fall in the amplitude of EPPs of 40-45%. The fall was similar in regenerating and control fibres. Conducting synapses never exhibited failure to generate an EPP during the period of high-frequency stimulation.
机译:1.已经进行了在大鼠比目鱼肌中再生骨骼肌纤维的神经肌肉功能的研究。肌肉纤维通过注射肌毒性毒液成分notexin在体内受到破坏,然后自发再生。 2.再生肌纤维产生动作电位,并在直接注射细胞内刺激后的第4天收缩。 3.在第3天,在少数突触处记录了微型终板电位(MEPP),在第5天记录了所有突触的记录。给定纤维中MEPP的平均幅度与肌肉纤维输入阻力成正比。 4.再生纤维中的自发性递质释放对[K +] 0的变化相对不敏感,但在再生肌纤维和对照肌纤维中,钌红对自发释放的作用相似。 5.功能神经支配定义为产生间接动作电位的能力,到10天时,97%的纤维中恢复了功能。动作电位的产生总是与肌纤维的抽搐有关。那些不能产生动作电位的纤维通常表现出低的膜电位(ca -50 mV)。如果使用细胞内通过电流的微电极对这些纤维进行超极化,则这些纤维可以产生动作电位。 6.根据切割的肌肉纤维制剂中的平均EPP和平均MEPP振幅估算端板电位(EPP)的定量含量。这些估计表明,在再生的最初阶段,定量含量较低,但随着肌肉纤维的成熟而增加,并在10-21天恢复正常。 7.在30 Hz的重复刺激期间,EPP的幅度下降了40-45%。再生纤维和对照纤维的下降幅度相似。传导性突触在高频刺激期间从未表现出无法产生EPP的现象。

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