Langer S Z, Moret C
J Pharmacol Exp Ther. 1982 Jul;222(1):220-6.
Slices of rat hypothalamus prelabeled with [3H]-5-hydroxytryptamine ([3H]-5-HT) were superfused and the release of the labeled transmitter was elicited either by electrical stimulation or by fenfluramine. Whereas the electrically stimulated release of [3H]-5-HT was completely abolished by removing calcium from the superfusion medium, the fenfluramine-induced release of [3H]-5-HT was calcium-independent. Methiothepin increased, in a concentration-dependent manner, the [3H]-5-HT release induced by electrical stimulation but had no effect on that elicited by fenfluramine. The 3H-transmitter release elicited by electrical stimulation was inhibited by lysergic acid diethylamide (LSD) in a concentration-dependent manner, but the release induced by fenfluramine was not modified by LSD. The reduction by LSD of [3H]-5-HT overflow elicited by electrical stimulation was antagonized by methiothepin, but unaffected by phentolamine or by sulpiride. Low concentrations (10-1000 nM) of citalopram, a 5-HT uptake inhibitor, antagonized the inhibition by LSD of electrically evoked release of [3H]-5-HT. These concentrations of citalopram did not modify by themselves the overflow of [3H]-5-HT elicited by electrical stimulation. It is concluded that the modulation of [3H]-5-HT release by presynaptic serotonin autoreceptors is not operational when the neurotransmitter is released through a calcium-independent mechanism. The potent presynaptic inhibition by LSD of serotonergic neurotransmission may contribute to the central actions of this drug. The interaction between citalopram and LSD at the level of [3H]-5-HT release does not seem to involve a competitive interaction at the same receptor site. The possibility that neuronal uptake of 5-HT and the presynaptic 5-HT autoreceptor may be linked in a functional manner cannot be excluded.
用[3H]-5-羟色胺([3H]-5-HT)预先标记的大鼠下丘脑切片进行灌流,通过电刺激或芬氟拉明引发标记递质的释放。虽然从灌流培养基中去除钙可完全消除电刺激引起的[3H]-5-HT释放,但芬氟拉明诱导的[3H]-5-HT释放不依赖于钙。甲硫哒嗪以浓度依赖性方式增加电刺激诱导的[3H]-5-HT释放,但对芬氟拉明引起的释放没有影响。电刺激引发的3H递质释放受到麦角酸二乙胺(LSD)浓度依赖性抑制,但芬氟拉明诱导的释放不受LSD影响。LSD对电刺激引起的[3H]-5-HT溢出的减少被甲硫哒嗪拮抗,但不受酚妥拉明或舒必利影响。5-羟色胺摄取抑制剂西酞普兰的低浓度(10 - 1000 nM)拮抗LSD对电诱发的[3H]-5-HT释放的抑制作用。这些浓度的西酞普兰本身不会改变电刺激引起的[3H]-5-HT溢出。结论是,当神经递质通过不依赖钙的机制释放时,突触前5-羟色胺自身受体对[3H]-5-HT释放的调节不起作用。LSD对5-羟色胺能神经传递的强大突触前抑制作用可能有助于该药物的中枢作用。西酞普兰和LSD在[3H]-5-HT释放水平上的相互作用似乎不涉及在同一受体位点的竞争性相互作用。不能排除5-羟色胺的神经元摄取与突触前5-羟色胺自身受体可能以功能方式联系的可能性。