Mori J, Ashida H, Maru E, Tatsuno J
J Cell Physiol. 1982 Mar;110(3):241-4. doi: 10.1002/jcp.1041100303.
Action potentials evoked by depolarizing pulses were studied in immature cultured cerebral cortical neurons from chick embryos. The majority of action potentials were rather small, and they were still elicited in the presence of 10(-7) gm/ml tetrodotoxin (TTX), but were almost completely abolished in NA+-free solution or by 10(-5) gm/ml TTX in Tyrode's solution. The elevation of external Ca2+ concentration not only increased the maximum rates of rise of action potentials in normal Tyrode's solution with and without low (10(-7) gm/ml) TTX but also regenerated action potentials in high (10(-5) gm/ml) TTX-containing Tyrode's solution or in Na+-free solution. These high Ca2+ effects were blocked by Mn2+ or Co2+. These results suggest that action potentials, which were predominantly Na-dependent, are partially contributed by Ca ions in immature chick cerebral cortical neurons.
对来自鸡胚的未成熟培养大脑皮质神经元中去极化脉冲诱发的动作电位进行了研究。大多数动作电位相当小,并且在存在10⁻⁷克/毫升河豚毒素(TTX)的情况下仍能诱发,但在无钠溶液中或在台氏液中加入10⁻⁵克/毫升TTX时几乎完全消失。外部Ca²⁺浓度的升高不仅增加了在有和没有低浓度(10⁻⁷克/毫升)TTX的正常台氏液中动作电位的最大上升速率,还在含有高浓度(10⁻⁵克/毫升)TTX的台氏液或无钠溶液中使动作电位再生。这些高钙效应被Mn²⁺或Co²⁺阻断。这些结果表明,主要依赖钠的动作电位在未成熟鸡大脑皮质神经元中部分由钙离子介导。