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苯二氮䓬类药物及其一些主要代谢产物在体外对正常人额叶皮质中其作用位点的结合。

Binding of benzodiazepines and some major metabolites at their sites in normal human frontal cortex in vitro.

作者信息

Richelson E, Nelson A, Neeper R

机构信息

Department of Psychiatry and Psychology, Mayo Clinic, Rochester, Minnesota.

出版信息

J Pharmacol Exp Ther. 1991 Mar;256(3):897-901.

PMID:1848631
Abstract

Using [3H]flunitrazepam in radioligand binding assays, we determined equilibrium dissociation constants (Kd's) at 37 degrees C for 22 benzodiazepines (15 parent compounds and 7 major metabolites) at benzodiazepine binding sites in human frontal cortex. This list included several compounds never studied before at human receptors. Although dissociation was too rapid to measure reliably at this temperature, the Kd's for flunitrazepam were not significantly different when either rapid filtration or centrifugation was used to separate the bound from free radioligand. The most potent compound was triazolam (Kd = 0.54 nM); the least potent, chlordiazepoxide (Kd = 684 nM). The Kd's were significantly lower (about 3- to 7-fold) for several compounds tested at an equilibrium temperature of 0 degrees C compared to those obtained at 37 degrees C. There was a strong correlation for 15 compounds for the log Kd at rat brain receptors (data obtained from the literature) vs. the log Kd for human brain. In addition, the log Kd's of the various benzodiazepines for their receptor were significantly correlated with the log of their minimum daily dosages used to treat patients. Many of the benzodiazepines have clinically important active metabolites that have higher affinity for benzodiazepine binding sites in human brain than their parent compounds. Such data have important implications in the clinical use of these compounds.

摘要

在放射性配体结合试验中,我们使用[³H]氟硝西泮测定了22种苯二氮䓬类药物(15种母体化合物和7种主要代谢物)在37℃时于人额叶皮质苯二氮䓬类结合位点的平衡解离常数(Kd值)。该列表包括几种此前从未在人体受体上研究过的化合物。尽管在该温度下解离速度太快以至于无法可靠测量,但当使用快速过滤或离心法分离结合态与游离态放射性配体时,氟硝西泮的Kd值并无显著差异。活性最强的化合物是三唑仑(Kd = 0.54 nM);活性最弱的是氯氮䓬(Kd = 684 nM)。与在37℃时获得的值相比,在0℃平衡温度下测试的几种化合物的Kd值显著更低(约3至7倍)。对于15种化合物,大鼠脑受体的log Kd值(从文献中获得的数据)与人脑的log Kd值之间存在很强的相关性。此外,各种苯二氮䓬类药物与其受体的log Kd值与其用于治疗患者的最小日剂量的对数显著相关。许多苯二氮䓬类药物具有临床上重要的活性代谢物,这些代谢物对人脑苯二氮䓬类结合位点的亲和力高于其母体化合物。此类数据对这些化合物的临床应用具有重要意义。

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