King W M, Yang J, Lent C M
Comp Biochem Physiol C Comp Pharmacol Toxicol. 1984;79(1):71-6. doi: 10.1016/0742-8413(84)90165-8.
Physostigmine (PHY; eserine) prolongs the action potentials in the Retzius cells within leech ganglia to about 800 ms. The effect was reversible and occurred at concentrations of 1-10 mM which are several orders of magnitude greater than those required to inhibit cholinesterase. The prolonged action potentials showed an early, spike-like depolarization followed by a plateau. The initial depolarization exhibited a strong dependence on external Na+ while the amplitude of the plateau had somewhat less Na+ dependence: 52 and 24 mV/decade, respectively. The duration of the plateau was increased by elevating Na+ and decreased by elevating Ca2+. Increasing the action potential frequency, by intracellular stimulation, decreased both the duration and amplitude of the plateau. Neostigmine, di-isopropylphosphofluoridate, and acetylcholine did not prolong RZ action potentials. Thus, the membrane effects of physostigmine appear to be independent of any inhibition of cholinesterase or accumulation of acetylcholine.
毒扁豆碱(PHY;依色林)可将水蛭神经节内Retzius细胞的动作电位延长至约800毫秒。该效应是可逆的,在1 - 10 mM的浓度下出现,此浓度比抑制胆碱酯酶所需的浓度高几个数量级。延长的动作电位表现出早期的、类似尖峰的去极化,随后是一个平台期。初始去极化对外部Na +有很强的依赖性,而平台期的幅度对Na +的依赖性稍小:分别为52和24 mV/十倍浓度变化。通过提高Na +可增加平台期的持续时间,通过提高Ca2 +则可减少其持续时间。通过细胞内刺激增加动作电位频率,会同时降低平台期的持续时间和幅度。新斯的明、二异丙基氟磷酸酯和乙酰胆碱不会延长Retzius细胞的动作电位。因此,毒扁豆碱的膜效应似乎与胆碱酯酶的任何抑制作用或乙酰胆碱的积累无关。