Dyck L E, Juorio A V, Durden D A, Boulton A A
Department of Psychiatry, University of Saskatchewan, Saskatoon, Canada.
Naunyn Schmiedebergs Arch Pharmacol. 1988 Mar;337(3):279-83. doi: 10.1007/BF00168839.
The effects of phenelzine and 1,1-dideuterophenelzine (0.5 or 2.5 mg/kg/day) administered s.c. via miniosmotic pumps for 13 days were compared. Striatal levels of p-tryrosine and tryptophan were unaffected by either treatment. The concentrations of DOPAC, HVA and 5-HIAA were dose-dependently decreased by phenelzine and deuterated phenelzine; furthermore, the deuterated compound decreased the amounts of these acids more than the same dose of phenelzine. Dopamine levels were increased by a rather small amount by all drug treatments; no effects of drug dose or drug type (deuterated or nondeuterated) were observed. With the exception of phenylethylamine, qualitatively similar effects were found with all other amines measured; their amounts were increased dose-dependently and the effects of deuterated phenelzine were greater than those of phenelzine. Rat cerebral MAO activity was inhibited dose-dependently by phenelzine and by deuterated phenelzine. Type A MAO was inhibited more than type B, and deuterated phenelzine inhibited both types more than did phenelzine. The present study shows that the efficacy of phenelzine was increased about 5-fold by deuteration, that deuterated phenelzine increased tryptamine, m-tyramine and p-tyramine levels much more than it did the other monoamines, that phenylethylamine levels were least affected by the drug treatments, and that deuterated phenelzine inhibited MAO more than did phenelzine.
比较了通过微型渗透泵皮下注射给予苯乙肼和1,1-二氘代苯乙肼(0.5或2.5毫克/千克/天)13天的效果。纹状体内对酪氨酸和色氨酸的水平不受任何一种处理的影响。苯乙肼和氘代苯乙肼使3,4-二羟基苯乙酸(DOPAC)、高香草酸(HVA)和5-羟吲哚乙酸(5-HIAA)的浓度呈剂量依赖性降低;此外,氘代化合物比相同剂量的苯乙肼更能降低这些酸的含量。所有药物处理均使多巴胺水平略有升高;未观察到药物剂量或药物类型(氘代或非氘代)的影响。除苯乙胺外,在所测定的所有其他胺类中发现了定性相似的效果;它们的含量呈剂量依赖性增加,且氘代苯乙肼的效果大于苯乙肼。大鼠脑单胺氧化酶(MAO)活性受到苯乙肼和氘代苯乙肼的剂量依赖性抑制。A型MAO比B型受到的抑制更强,且氘代苯乙肼对两种类型的抑制作用均大于苯乙肼。本研究表明,氘代使苯乙肼的疗效提高了约5倍,氘代苯乙肼使色胺、间酪氨酸和对酪氨酸水平的升高幅度远大于其他单胺,苯乙胺水平受药物处理的影响最小,且氘代苯乙肼比苯乙肼更能抑制MAO。