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渗透压变化对哺乳动物运动神经末梢递质释放影响的研究。

An examination of the effects of osmotic pressure changes upon transmitter release from mammalian motor nerve terminals.

作者信息

Hubbard J I, Jones S F, Landau E M

出版信息

J Physiol. 1968 Aug;197(3):639-57. doi: 10.1113/jphysiol.1968.sp008579.

Abstract
  1. When the frequency of miniature end-plate potentials (m.e.p.p.s) was measured at neuromuscular junctions in rat diaphragm nerve preparations in vitro bathed in solutions having osmolarities between 200 and 700 m-osmoles/l. it was found that m.e.p.p. frequency was transiently increased by exposure to osmotic gradients exceeding 75 m-osmoles/l., and then declined, within 1 hr, to a steady level slightly higher than the control level of frequency. Smaller osmotic gradients caused a maintained increase in m.e.p.p. frequency. E.p.p. quantal content was initially increased and later profoundly decreased upon exposure of preparations to solutions with an osmotic pressure of 500 or 600 m-osmoles/l. but was unaffected by less hypertonic solutions.2. Variation of the Ca or Mg content of the bathing solutions did not alter these effects of osmotic pressure on the early transient increase in m.e.p.p. frequency or e.p.p. quantal content but affected the late steady increase in m.e.p.p. frequency.3. The value of the transient increase in m.e.p.p. frequency was exponentially related to the osmotic gradient in the range 0-300 m-osmoles/l. with a Q(10) of 1.95 (range 11-34 degrees C). Greater osmotic gradients did not further increase m.e.p.p. frequency. Variation of the ionic strength of the bathing medium did not influence osmotic effects upon frequency.4. The discrepancy between the effects of osmotic gradients upon spontaneous and nerve-impulse induced transmitter release was explained by an occlusion of the osmotic effects by depolarization of nerve terminals. Time-course studies showed that in the presence of 20 mM-KCl the m.e.p.p. frequency increase in response to an increase in osmotic pressure was small and was followed by a reduction in frequency to below control levels while osmotic pressure changes had no immediate effect upon m.e.p.p. frequency in solutions containing 30 mM-KCl.5. It was concluded that increased osmotic gradients could release transmitter by a mechanism independent of Ca and of nerve terminal depolarization.6. It is suggested that the initial transient effects of changes of osmotic gradient upon transmitter release are related to flow of water through the nerve terminal membrane, while the later effects are related to nerve terminal volume changes.
摘要
  1. 在体外将大鼠膈神经制备物置于渗透压在200至700毫渗摩尔/升之间的溶液中浸泡,测量神经肌肉接头处微小终板电位(m.e.p.p.s)的频率时发现,暴露于超过75毫渗摩尔/升的渗透梯度会使m.e.p.p.频率短暂增加,然后在1小时内下降至略高于对照频率水平的稳定水平。较小的渗透梯度会使m.e.p.p.频率持续增加。将制备物暴露于渗透压为500或600毫渗摩尔/升的溶液中时,终板电位(E.p.p.)的量子含量最初增加,随后大幅下降,但受渗透压较低的溶液影响不大。

  2. 浴液中钙或镁含量的变化并未改变渗透压对m.e.p.p.频率早期短暂增加或E.p.p.量子含量的这些影响,但影响了m.e.p.p.频率后期的稳定增加。

  3. 在0至300毫渗摩尔/升范围内,m.e.p.p.频率的短暂增加值与渗透梯度呈指数关系,Q(10)为1.95(温度范围为11至34摄氏度)。更大的渗透梯度并未进一步增加m.e.p.p.频率。浴液介质离子强度的变化不影响频率的渗透效应。

  4. 神经末梢去极化对渗透效应的阻断解释了渗透梯度对自发释放和神经冲动诱发的递质释放的影响之间的差异。时程研究表明,在存在20 mM - KCl的情况下,渗透压升高时m.e.p.p.频率的增加很小,随后频率降至对照水平以下,而在含有30 mM - KCl的溶液中,渗透压变化对m.e.p.p.频率没有立即影响。

  5. 得出的结论是,增加的渗透梯度可通过一种独立于钙和神经末梢去极化的机制释放递质。

  6. 有人提出,渗透梯度变化对递质释放的最初短暂影响与水通过神经末梢膜的流动有关,而后期影响与神经末梢体积变化有关。

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