Excitatory junction potentials and electrotonic potentials were recorded from the smooth muscle of the rabbit saphenous artery using intracellular electrodes. 2. Tetraethylammonium chloride (TEA) in concentrations greater than 3.5 mM caused depolarization. Concentrations greater than 5 mM caused spontaneous electrical activity in the form of excitatory junction potentials (e.j.p.s) and all-or-nothing action potentials which were associated with spontaneous mechanical activity. 3. Concentrations of TEA less than 2.5 mM did not alter the resting potential nor the passive membrane properties of the smooth muscle over a range of +/- 15 mV. 4. The following effects were observed in 2.0 mM-TEA. (a) The minimum stimulus strength required for the initiation of an e.j.p. fell by three to fivefold. (b) Single stimuli that elicited only a small e.j.p. in normal solution evoked an all-or-nothing action potential of up to 70 mV amplitude. (c) Whereas in normal solution e.j.p.s could only be recorded up to 7 mm away from the perivascular stimulating electrode e.j.p.s could be recorded at distances of up to 13 mm. (d) The duration of the e.j.p. was prolonged. 5. Based on these results and the effects of TEA reported for other synapses it is proposed that TEA may act to increase the amount of transmitter released per axon, to increase the duration of release and to cause an increased invasion throughout the autonomic ground plexus by nerve impulses. This would imply that in normal solution, in vitro, the action potential may not propagate throughout the whole length of the terminal axon and its many branches due to failure of conduction at one or more points along the terminal portion of the axon.
摘要
使用细胞内电极从兔隐动脉平滑肌记录兴奋性接头电位和电紧张电位。2. 浓度大于3.5 mM的氯化四乙铵(TEA)引起去极化。浓度大于5 mM时会引发以兴奋性接头电位(e.j.p.s)形式出现的自发性电活动以及与自发性机械活动相关的全或无动作电位。3. 浓度低于2.5 mM的TEA在±15 mV范围内不会改变平滑肌的静息电位或被动膜特性。4. 在2.0 mM - TEA中观察到以下效应。(a)引发e.j.p.所需的最小刺激强度降低了三到五倍。(b)在正常溶液中仅引发小e.j.p.的单个刺激可诱发幅度高达70 mV的全或无动作电位。(c)在正常溶液中,仅在距血管周围刺激电极7 mm处才能记录到e.j.p.s,而在2.0 mM - TEA中,在距刺激电极13 mm处仍可记录到e.j.p.s。(d)e.j.p.的持续时间延长。5. 根据这些结果以及报道的TEA对其他突触的作用,推测TEA可能会增加每个轴突释放的递质数量,延长释放持续时间,并使神经冲动在整个自主神经丛中更广泛地侵入。这意味着在体外正常溶液中,由于轴突末梢部分一个或多个点的传导失败,动作电位可能无法在终末轴突及其许多分支的全长上传播。