首页> 美国卫生研究院文献>The Journal of Physiology >Sodium- and calcium-dependent conductances of neurones in the zebra finch hyperstriatum ventrale pars caudale in vitro.
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Sodium- and calcium-dependent conductances of neurones in the zebra finch hyperstriatum ventrale pars caudale in vitro.

机译:斑马雀科纹状体腹侧神经元的依赖钠和钙的电导在体外对考代尔的影响。

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摘要

1. Intracellular recordings were made from zebra finch hyperstriatum ventrale pars caudale (HVc) neurones in in vitro slice preparations. 2. Small depolarizing current pulses elicited tonic firing while relatively large current pulses elicited an initial high-frequency burst followed by tonic firing. Time-dependent and fast-activated inward rectification were observed when a hyperpolarizing current pulse was applied. 3. Fast action potentials were abolished by tetrodotoxin (TTX, 0.5 micrograms/ml). When Co2+ (2.2-2.4 mM) was added to a low-Ca2+ (0-0.2 mM) solution, a plateau potential was elicited by a small depolarizing current pulse. These plateau potentials outlasted the applied current pulse and were abolished by TTX (0.5 micrograms/ml). 4. A long-lasting after-hyperpolarization (AHP), with a duration of tens of seconds, followed long trains of repetitive firing in control solution. Even in a low-Ca2+ (0-0.2 mM) solution containing Co2+ (2.2-2.4 mM) the long-lasting AHPs followed plateau potentials and were associated with an increase in input conductance. The long-lasting AHP, as well as the plateau potential, was blocked by TTX (0.5 micrograms/ml). 5. While TTX abolished fast action potentials, two types of active responses with different thresholds were elicited by depolarizing current in the presence of TTX (0.5 micrograms/ml), particularly when tetraethylammonium (5 mM) was also added to the solution. Both the low-threshold spike (LTS) and the high-threshold spike (HTS) were abolished by Co2+ (2.2-2.3 mM). 6. When Ba2+ (0.5-1 mM) was added to a solution containing TTX (0.5 micrograms/ml), an LTS elicited by a depolarizing current pulse became larger in amplitude. At membrane potentials more positive than -55 mV, an HTS, but not the LTS, was elicited. 7. These results suggest that HVc neurones have three Na(+)-dependent conductances: a fast Na+ conductance responsible for the fast spike, a persistent Na+ conductance responsible for the plateau potential, and a Na(+)-activated K+ conductance responsible for the long-lasting AHP; and that they have two Ca(2+)-dependent conductances: a low-threshold Ca2+ conductance responsible for the LTS, and a high-threshold Ca2+ conductance responsible for the HTS.
机译:1.在体外切片制备中,从斑马雀科的超细纹腹侧aus caudale(HVc)神经元中进行细胞内记录。 2.较小的去极化电流脉冲会引起强音放电,而较大的电流脉冲会引起最初的高频猝发,然后进行强音放电。当施加超极化电流脉冲时,观察到时间依赖性和快速激活的向内整流。 3.河豚毒素(TTX,0.5微克/毫升)消除了快动作电位。当将Co2 +(2.2-2.4 mM)添加到低Ca2 +(0-0.2 mM)溶液中时,小的去极化电流脉冲会引起平台电位。这些平台电位超过了施加的电流脉冲,并被TTX(0.5微克/毫升)消除。 4.持续数十秒的持续超极化后(AHP),然后在对照溶液中进行长时间的重复发射。即使在含有Co2 +(2.2-2.4 mM)的低Ca2 +(0-0.2 mM)溶液中,持久的AHP也会跟随平台电位,并且与输入电导率的增加相关。持久的AHP以及平台电位被TTX(0.5微克/毫升)阻断。 5.尽管TTX消除了快速动作电位,但在存在TTX(0.5微克/毫升)的情况下,通过去极化电流引发了两种类型的具有不同阈值的主动响应,特别是在溶液中还添加了四乙铵(5 mM)时。 Co2 +(2.2-2.3 mM)废除了低阈值峰值(LTS)和高阈值峰值(HTS)。 6.当将Ba2 +(0.5-1 mM)添加到含TTX(0.5微克/毫升)的溶液中时,由去极化电流脉冲引起的LTS的振幅变大。在膜电位高于-55 mV的情况下,引发了HTS,但未引发LTS。 7.这些结果表明,HVc神经元具有三种依赖于Na(+)的电导:负责快速峰的快速Na +电导,负责高原电位的持久性Na +电导以及负责Na(+)激活的K +电导。持久的AHP;并且它们具有两种Ca(2+)依赖性电导:负责LTS的低阈值Ca2 +电导和负责HTS的高阈值Ca2 +电导。

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