Suleymanian M A, Takenaka T, Stamboltsyan K V, Ayrapetyan S N
Cell Mol Neurobiol. 1986 Jun;6(2):151-63. doi: 10.1007/BF00711067.
The effects of short-chain fatty acids on the membrane excitability, current-voltage (I-V) characteristics, and cell volume of Helix pomatia neurons were studied. 2-Decenoic acid (DA), having 10 carbon atoms in the hydrocarbon chain, suppressed the excitability of bursting neurons RPa1 (Sakharov and Salanki, 1969) for 30-60 min, while valeric acid (VA), having 5 carbon atoms, had no significant effect on excitability. DA had three different effects on the excitability of beating neurons: in some neurons DA suppressed excitability as in bursting neurons; in a second type of neuron DA had a negligible effect on excitability; and in the neuron located near RPa1 DA had a pentylentetrazol (PTZ)-like effect, i.e., it converted the discharge of the neuron from beating to bursting. DA decreased the peak value of the current, inducing a negative-resistance region in the I-V curve of the bursting neuron without any change in the level of the voltage at which the current reaches its maximal value. DA inhibited the hyperpolarization induced by activation of the Na+ pump, tested after preliminary enrichment of neurons with Na+ ions by incubation in a potassium-free solution for 20 min. DA caused a swelling of the neuron by about 10% which was independent of the Na+ pump. In all the above-mentioned cases VA had no significant effect.
研究了短链脂肪酸对罗马蜗牛神经元的膜兴奋性、电流-电压(I-V)特性和细胞体积的影响。具有10个碳原子的2-癸烯酸(DA)可抑制爆发性神经元RPa1的兴奋性(Sakharov和Salanki,1969)达30 - 60分钟,而具有5个碳原子的戊酸(VA)对兴奋性无显著影响。DA对搏动性神经元的兴奋性有三种不同影响:在一些神经元中,DA如同对爆发性神经元一样抑制兴奋性;在第二类神经元中,DA对兴奋性的影响可忽略不计;在靠近RPa1的神经元中,DA具有类似戊四氮(PTZ)的作用,即它使神经元的放电从搏动转变为爆发。DA降低了电流峰值,在爆发性神经元的I-V曲线中诱导出负电阻区域,而电流达到最大值时的电压水平没有任何变化。在通过在无钾溶液中孵育20分钟用Na⁺离子预富集神经元后进行测试,DA抑制了由Na⁺泵激活诱导的超极化。DA使神经元肿胀约10%,这与Na⁺泵无关。在上述所有情况下,VA均无显著影响。