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四乙铵和钴离子对蟾蜍视杆细胞对外源性电流反应的影响。

The effects of tetraethylammonium and cobalt ions on responses to extrinsic current in toad rods.

作者信息

Fain G L, Quandt F N

出版信息

J Physiol. 1980 Jun;303:515-33. doi: 10.1113/jphysiol.1980.sp013301.

Abstract
  1. Double-barrel micropipettes were used to pass pulses of current in darkness into single rods in the isolated, perfused retina of the toad, Bufo marinus. 2. In normal Ringer solution, current pulses evoked non-linear changes in membrane potential which varied as a function of current amplitude and of time. Responses to currents of both polarities showed slow relaxations toward the base line during the pulse, and the steady-state I-V curve exhibited a prominent outward rectification. 3. In Ringer containing 12 mM-TEA, the slow relaxation of voltage during outward current pulses was diminished, and the outward rectification was markedly reduced. In contrast Co2+, at a concentration in excess of that required to block Ca2+ spikes in rods, increased the receptor input resistance but did not reduce either the amplitude of the slow relaxation or the extent of outward rectification. 4. These experiments indicated that the outward rectification of rods is predominantly due to a conductance which is gated by voltage rather than by entry of Ca2+. 5. Long-lasting after-potentials followed the termination of outward current pulses. In normal Ringer the after-potentials were hyperpolarizing and were accompanied by an increase in input conductance. In TEA, the afterpotentials were depolarizing and were also accompanied by an increase in input conductance. The after-depolarizations in TEA were enhanced by Sr2+ and blocked by Co2+. These experiments suggest that the hyperpolarizing and depolarizing afterpotentials are produced by different mechanisms, the hyperpolarizing by an increase in K+ conductance, and the depolarizing by an increase in Ca2+ conductance.
摘要
  1. 使用双管微量移液器在黑暗中将电流脉冲施加到海蟾蜍(Bufo marinus)分离灌注视网膜中的单个视杆细胞上。2. 在正常的林格氏溶液中,电流脉冲引起膜电位的非线性变化,该变化随电流幅度和时间而变化。对两种极性电流的反应在脉冲期间均显示出向基线的缓慢松弛,并且稳态电流-电压曲线表现出明显的外向整流。3. 在含有12 mM四乙铵(TEA)的林格氏溶液中,外向电流脉冲期间电压的缓慢松弛减弱,外向整流明显降低。相比之下,浓度超过阻断视杆细胞中钙尖峰所需浓度的Co2+增加了受体输入电阻,但既未降低缓慢松弛的幅度,也未降低外向整流的程度。4. 这些实验表明,视杆细胞的外向整流主要归因于一种由电压而非Ca2+内流门控的电导。5. 外向电流脉冲终止后会出现持久的后电位。在正常林格氏溶液中,后电位是超极化的,并伴有输入电导增加。在TEA中,后电位是去极化的,也伴有输入电导增加。TEA中的去极化后电位被Sr2+增强并被Co2+阻断。这些实验表明,超极化和去极化后电位是由不同机制产生的,超极化是由K+电导增加引起的,而去极化是由Ca2+电导增加引起的。

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