首页> 美国卫生研究院文献>The Journal of Physiology >Effects of lanthanum at snake twitch and tonic muscle fibre endplates.
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Effects of lanthanum at snake twitch and tonic muscle fibre endplates.

机译:镧对蛇抽搐和强直肌纤维终板的影响。

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摘要

1. The effects of 1 mM lanthanum on miniature endplate current (MEPC) frequency, amplitude, and decay time course were studied in voltage-clamped twitch and tonic muscle fibres in the garter snake, Thamnophis. 2. Lanthanum produced a marked increase in MEPC frequency in both fibre types. The maximum frequency in lanthanum was greater at twitch endplates than at tonic endplates although the increase in frequency relative to control levels was as great in tonic fibres as in twitch fibres. 3. In twitch fibres continually exposure to lanthanum, the frequency of MEPCs reached a peak value and then declined progressively until, after approximately 6 h, no MEPCs were recorded. In contrast, at tonic endplates exposed to 1 mM lanthanum, MEPC frequency remained elevated above control levels for periods greater than 20 h. 4. Lanthanum decreased the mean amplitude of MEPCs, skewed the amplitude distribution and increased MEPC duration at both twitch and tonic fibre endplates. 5. Ultrastructural analysis showed that after a 15 min exposure to 1 mM lanthanum, approximately half of the boutons innervating a twitch fibre contained fewer synaptic vesicles than boutons at control endplates, whereas nerve terminals innervating tonic fibre endplates were similar in appearance to those in control preparations. At endplates on both fibres, the postsynaptic membrane was more electron dense than that of control preparations. 6. Following a 6 h exposure to lanthanum, all nerve terminals innervating twitch endplates contained only a few synaptic vesicles and numerous intracellular deposits of electron dense material. The nerve terminals innervating tonic endplates still contained many synaptic vesicles, but the number appeared to be less than that of tonic terminals in untreated preparations. 7. The results demonstrate that lanthanum stimulates spontaneous quantal transmitter release from nerve terminals innervating either twitch or tonic fibres. However, the terminals innervating twitch fibres become depleted of synaptic vesicles, whereas this does not occur as readily in nerve terminals innervating tonic fibres.
机译:1.研究了1 mM镧对吊袜蛇Thamnophis中电压钳制的抽搐和强直肌纤维的微型终板电流(MEPC)频率,幅度和衰减时间过程的影响。 2.两种纤维中的镧都使MEPC频率显着增加。抽搐终板中镧的最大频率大于调子终板中的最大频率,尽管相对于对照水平,频率的增加在调子纤维中与在抽搐纤维中一样大。 3.在连续暴露于镧的抽搐纤维中,MEPC的频率达到峰值,然后逐渐下降,直到大约6小时后,未记录到MEPC。相反,在暴露于1 mM镧的强力终板中,MEPC频率在高于20 h的时间内保持高于控制水平。 4.镧降低了抽动和补强纤维端板的平均平均电离振幅,偏斜了振幅分布并增加了平均回旋持续时间。 5.超微结构分析表明,暴露于1 mM镧15分钟后,支配抽动纤维的大约一半的钮扣突触囊泡比对照端板上的钮扣少,而支配张力纤维终板的神经末梢的外观与对照组相似。准备。在两种纤维的终板上,突触后膜的电子致密性均高于对照制剂。 6.接触镧6小时后,支配抽动终板的所有神经末梢仅包含少量突触囊泡和大量细胞内电子致密物质沉积物。支配滋补终板的神经末梢仍然含有许多突触小泡,但数量似乎少于未经处理的制剂的滋补末梢。 7.结果表明,镧刺激神经末梢自发的定量递质释放,神经末梢支配抽搐或张力纤维。然而,支配抽动纤维的末端耗尽了突触小泡,而这在支配张力纤维的神经末梢并不容易发生。

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