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从芬氟拉明消旋体到右旋芬氟拉明。对血清素能系统和食物摄入影响的特异性和效力。

From fenfluramine racemate to d-fenfluramine. Specificity and potency of the effects on the serotoninergic system and food intake.

作者信息

Garattini S, Mennini T, Samanin R

出版信息

Ann N Y Acad Sci. 1987;499:156-66. doi: 10.1111/j.1749-6632.1987.tb36207.x.

Abstract

Experiments using the binding of various ligands for monoamines to rat brain membranes and synaptosomal preparations for studying monoamine uptake and release have shown that d-fenfluramine is more potent than the l isomer in inhibiting 5-HT uptake, whereas d-norfenfluramine preferentially releases 5-HT from a reserpine-insensitive compartment. Studies on brain monoamine metabolism in intact animals have shown that the d and l isomers of fenfluramine at relatively low doses have a specific action on brain 5-HT and catecholamines, respectively. Based on the different ability of metergoline and ritanserin to displace 5-HT2 binding to rat brain membranes and to antagonize d-fenfluramine's anorexia, evidence has been provided that d-fenfluramine preferentially uses 5-HT1 sites in the rat brain to cause anorexia in this animal species. Finally, characteristics, regional distribution, and pharmacological characterization of a high-affinity [3H]d-fenfluramine binding to rat brain membranes have been described. This binding appears to be different from 5-HT uptake sites ([3H]imipramine binding) and 5-HT receptors and is not regionally related to the endogenous levels of 5-HT in the rat brain. It is, however, preferentially displaced by some agents using 5-HT to cause anorexia in rats, raising the possibility that it is somewhat related to 5-HT mechanisms involved in feeding control.

摘要

利用各种单胺配体与大鼠脑膜结合以及突触体制剂来研究单胺摄取和释放的实验表明,右旋芬氟拉明在抑制5-羟色胺(5-HT)摄取方面比左旋异构体更有效,而右旋去甲芬氟拉明优先从利血平不敏感的区室释放5-HT。对完整动物脑单胺代谢的研究表明,芬氟拉明的右旋和左旋异构体在相对低剂量时分别对脑5-HT和儿茶酚胺有特定作用。基于麦角林和利坦色林置换5-HT与大鼠脑膜结合以及拮抗右旋芬氟拉明厌食作用的不同能力,已提供证据表明右旋芬氟拉明在大鼠脑中优先利用5-HT1位点导致该动物物种厌食。最后,描述了高亲和力[3H]右旋芬氟拉明与大鼠脑膜结合的特性、区域分布和药理学特征。这种结合似乎不同于5-HT摄取位点([3H]丙咪嗪结合)和5-HT受体,并且与大鼠脑内5-HT的内源性水平无区域相关性。然而,它优先被一些利用5-HT导致大鼠厌食的药物所取代,这增加了它与参与进食控制的5-HT机制有某种关联的可能性。

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