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小鼠输精管平滑肌的一些特性。

Some properties of the smooth muscle of mouse vas deferens.

作者信息

Holman M E, Taylor G S, Tomita T

出版信息

J Physiol. 1977 Apr;266(3):751-64. doi: 10.1113/jphysiol.1977.sp011791.

Abstract
  1. Contractions of the mouse vas deferens in response to electrical stimulation differ form those recorded form the guinea-pig vas deferens in that they are abolished by tetrodotoxin. 2. Changes in membrane potentials were recorded form the smooth muscle of both preparations in response to stimulation with current pulses applied by an intracellular electrode and by alrge extracellular plate electrodes. 3. Both preparations behaved similarly in response to intracellular stimulation. Electrotonic potentials in response to extracellular current pulses spread in a longitudinal direction in the guinea-pig vas deferens in accordance with the cable-like properties of this preparation. In contrast, no longitudinal spread of eletrotonus was observed in the mouse vas deferens. 4. Responses to nerve stimulation differed in the two preparations. In the guinea-pig, single stimuli caused excitatory junction potentials (e.j.p.s) which gave rise to action potentials. Some cells from the mouse vas deferens showed similar e.j.p.s and action potentials, although the threshold for the initiation of action potentials was lower and more variable. 5. The majority of cells in the mouse vas deferens failed to show action potentials in response to a single stimuli even though the amplitude of e.j.p.s was from 35 to 40 mV. This was probably due to the large resting membrane potentials of these cells, as all-or-nothing action potentials could be evoked if successive e.j.p.s were allowed to sum with each other or if a depolarizing current pulse was applied at the peak of an e.j.p. 6. The nature of the response to nerve stimulation recorded from differnt cells in the mouse vas deferens could be correlated with the amplitude and time course of the response of the same cell to intracellular stimulation. 7. It is concluded that individual smooth muscle cells in both preparations are probably coupled electrically but that there are few, if any, low resistance pathways in the longitudinal direction in the mouse vas deferens.
摘要
  1. 小鼠输精管对电刺激的收缩反应与豚鼠输精管记录的反应不同,因为它们可被河豚毒素消除。2. 用细胞内电极和大型细胞外平板电极施加电流脉冲刺激时,记录了两种标本平滑肌的膜电位变化。3. 两种标本对细胞内刺激的反应相似。豚鼠输精管中,对细胞外电流脉冲的电紧张电位根据该标本的电缆样特性沿纵向传播。相比之下,在小鼠输精管中未观察到电紧张的纵向传播。4. 两种标本对神经刺激的反应不同。在豚鼠中,单个刺激引起兴奋性突触后电位(e.j.p.s),进而产生动作电位。小鼠输精管的一些细胞显示出类似的e.j.p.s和动作电位,尽管动作电位起始的阈值较低且更具变异性。5. 小鼠输精管中的大多数细胞即使e.j.p.s的幅度为35至40 mV,对单个刺激也未显示动作电位。这可能是由于这些细胞的静息膜电位较大,因为如果连续的e.j.p.s相互叠加,或者在e.j.p.的峰值处施加去极化电流脉冲,就可以诱发全或无的动作电位。6. 从小鼠输精管不同细胞记录的对神经刺激的反应性质,可能与同一细胞对细胞内刺激的反应幅度和时间进程相关。7. 得出的结论是,两种标本中的单个平滑肌细胞可能通过电耦合,但小鼠输精管在纵向方向上几乎没有低电阻通路(如果有的话)。

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