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锂在小龙虾神经肌肉接头处的抑制作用:突触前和突触后的效应。

Depressant action of lithium at the crayfish neuromuscular junction: pre- and postsynaptic effects.

作者信息

Ortiz C L, Junge D

出版信息

J Exp Biol. 1978 Aug;75:171-87. doi: 10.1242/jeb.75.1.171.

Abstract
  1. The effects of replacement of external sodium ions with lithium have been studied at the excitatory neuromuscular junction of the crayfish. 2. Intracellularly recorded excitatory junctional potentials fall 45% in amplitude in the first 10 min after lithium substitution, and fail irreversibly in 48--120 min. 3. The quantal content of extracellularly recorded excitatory junctional potentials declines 25--70% within the first 10 min of Li+ exposure. During the next 40--120 min the nerve terminal potentials and quantal release at individual synapses fail simultaneously and irreversibly. 4. The mean amplitude of the spontaneous miniature excitatory junctional potentials (m.e.j.p.s) is reduced 13% by Li+ substitution, but recovers upon restoration of sodium. The mean frequency of m.e.j.p.s rises steadily during Li+ exposure, and continues to increase after reintroduction of Na+. 5. The postsynaptic response to iontophoretically applied L-glutamate falls 35--40% in 10 min, but never falls below 45% of the control level. The effect on the glutamate response is completely reversible with sodium restoration. 6. The effective resistance of the postsynpatic cells is unaffected or only increased slightly by lithium substitution. 7. Thus, the primary mechanism of transmission block by lithium appears to be decreased transmitter release and inexcitability of presynaptic terminals, probably as a result of intracellular accumulation of lithium.
摘要
  1. 已在小龙虾的兴奋性神经肌肉接头处研究了用锂替代外部钠离子的效果。2. 细胞内记录的兴奋性接头电位在锂替代后的最初10分钟内幅度下降45%,并在48 - 120分钟内不可逆地消失。3. 细胞外记录的兴奋性接头电位的量子含量在Li⁺暴露的最初10分钟内下降25 - 70%。在接下来的40 - 120分钟内,单个突触处的神经末梢电位和量子释放同时且不可逆地消失。4. 锂替代使自发微小兴奋性接头电位(m.e.j.p.s)的平均幅度降低13%,但在恢复钠离子后恢复。在Li⁺暴露期间,m.e.j.p.s的平均频率稳步上升,重新引入Na⁺后继续增加。5. 对离子电渗施加的L - 谷氨酸的突触后反应在10分钟内下降35 - 40%,但从未低于对照水平的45%。对谷氨酸反应的影响可通过恢复钠离子完全逆转。6. 锂替代对突触后细胞的有效电阻没有影响或仅略有增加。7. 因此,锂导致传递阻滞的主要机制似乎是递质释放减少和突触前末梢兴奋性丧失,这可能是锂在细胞内积累的结果。

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