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突触后皱襞对大鼠快肌和慢肌神经肌肉传递安全系数的作用。

The contribution of postsynaptic folds to the safety factor for neuromuscular transmission in rat fast- and slow-twitch muscles.

作者信息

Wood S J, Slater C R

机构信息

School of Neurosciences, The Medical School, University of Newcastle, Newcastle upon Tyne, UK.

出版信息

J Physiol. 1997 Apr 1;500 ( Pt 1)(Pt 1):165-76. doi: 10.1113/jphysiol.1997.sp022007.

Abstract
  1. At the rat neuromuscular junction, the postsynaptic folds and the voltage-gated sodium channels (VGSCs) within them are thought to amplify the effects of postsynaptic currents. In this study, the contribution of this effect to the safety factor for neuromuscular transmission, the ratio of the normal quantal content to the number of quanta required to reach threshold, has been estimated. 2. Normal quantal content was determined in isolated nerve-muscle preparations of rat soleus and extensor digitorum longus (EDL) muscles in which muscle action potentials were blocked by mu-conotoxin. The quantal content estimated from voltage recordings was 61.8 and 79.4 in soleus and EDL, respectively, and from charge measurements derived from current recordings was 46.3 (soleus) and 65.1 (EDL). 3. The threshold for action potential generation in response to nerve stimulation was determined from endplate potentials (EPPs) and endplate currents (EPCs) in preparations partially blocked with d-tubocurarine. The number of quanta required to reach threshold was estimated from voltage recordings to be 19.7 (soleus) and 23.2 (EDL) and from charge measurements derived from current recordings to be 13.3 (soleus) and 13.0 (EDL). 4. When intracellular electrodes were used to inject current into the muscle fibre, the total charge required to reach threshold was approximately twice that of the nerve-evoked threshold EPC. 5. The safety factor for nerve-evoked responses at the junction was 3.5 (soleus) and 5.0 (EDL). In the extrajunctional region the safety factor estimated from injected currents was 1.7 (soleus) and 2.5 (EDL). 6. It is concluded that the effect of the postsynaptic folds and the VGSCs within them is to double the safety factor. At normal frequencies of nerve impulse activity in vivo, this effect is likely to be crucial for ensuring effective neuromuscular transmission.
摘要
  1. 在大鼠神经肌肉接头处,突触后褶皱及其内部的电压门控钠通道(VGSCs)被认为可放大突触后电流的效应。在本研究中,已估算了这种效应对于神经肌肉传递安全系数(正常量子含量与达到阈值所需量子数的比值)的贡献。2. 在大鼠比目鱼肌和趾长伸肌(EDL)的离体神经 - 肌肉标本中测定正常量子含量,其中肌肉动作电位被μ - 芋螺毒素阻断。通过电压记录估算出的比目鱼肌和EDL的量子含量分别为61.8和79.4,通过电流记录得出的电荷测量值分别为46.3(比目鱼肌)和65.1(EDL)。3. 在被d - 筒箭毒碱部分阻断的标本中,根据终板电位(EPPs)和终板电流(EPCs)确定神经刺激引发动作电位的阈值。通过电压记录估算达到阈值所需的量子数,比目鱼肌为19.7,EDL为23.2;通过电流记录得出的电荷测量值,比目鱼肌为13.3,EDL为13.0。4. 当使用细胞内电极向肌纤维注入电流时,达到阈值所需的总电荷量约为神经诱发阈值EPC的两倍。5. 接头处神经诱发反应的安全系数,比目鱼肌为3.5,EDL为5.0。在接头外区域,根据注入电流估算的安全系数,比目鱼肌为1.7,EDL为2.5。6. 得出的结论是,突触后褶皱及其内部的VGSCs的效应是使安全系数翻倍。在体内神经冲动活动的正常频率下,这种效应可能对于确保有效的神经肌肉传递至关重要。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73a3/1159367/ca401b3cba97/jphysiol00279-0171-a.jpg

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