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非典型抗精神病药物对多巴胺D2受体的亲和力较低,或对D4受体具有选择性。

Atypical neuroleptics have low affinity for dopamine D2 receptors or are selective for D4 receptors.

作者信息

Seeman P, Corbett R, Van Tol H H

机构信息

Department of Pharmacology, University of Toronto, Canada.

出版信息

Neuropsychopharmacology. 1997 Feb;16(2):93-110; discussion 111-35. doi: 10.1016/S0893-133X(96)00187-X.

Abstract

This review examines the possible receptor basis of the atypical action of those atypical antipsychotic drugs that elicit low levels of Parkinsonism. Such an examination requires consistent and accurate dissociation constants for the antipsychotic drugs at the relevant dopamine and serotonin receptors. It has long been known, however, that the dissociation constant of a given antipsychotic drug at the dopamine D2 receptor varies between laboratories. Although such variation depends on several factors, it has recently been recognized that the radioligand used to measure the competition between the antipsychotic drug and the radioligand is an important variable. The present review summarizes information on this radioligand dependence. In general, a radioligand of low solubility in the membrane (i.e., low tissue:buffer partition) results in a low value for the antipsychotic dissociation constant when the drug competes with the radioligand. Hence, by first obtaining the antipsychotic dissociation constants using different radioligands of different solubility in the membrane, one can then extrapolate the data to low or "zero" ligand solubility. The extrapolated value represents the radioligand-independent dissociation constant of the antipsychotic. These values are here given for dopamine D2 and D4 receptors, as well as for serotonin 5-HT2A receptors. These values, moreover, agree with the dissociation constant directly obtained with the radioactive antipsychotic itself. For example, clozapine revealed a radioligand-independent value of 1.6 nM at the dopamine D4 receptor, agreeing with the value directly measured with [3H]-clozapine at D4. However, because clozapine competes with endogenous dopamine, the in vivo concentration of clozapine (to occupy dopamine D4 receptors) can be derived to be about 13 nM, agreeing with the value of 12 to 20 nM in the plasma water or spinal fluid observed in treated patients. The atypical neuroleptics remoxipride, clozapine, perlapine, seroquel, and melperone had low affinity for the dopamine D2 receptor (radioligand-independent dissociation constants of 30 to 90 nM). Such low affinity makes these latter five drugs readily displaceable by high levels of endogenous dopamine in the caudate or putamen. Most typical neuroleptics have radioligand-independent values of 0.3 to 5 nM at dopamine D2 receptors, making them more resistant to displacement by endogenous dopamine. Finally, a relation was found between the neuroleptic doses for rat catalepsy and the D2:D4 ratio of the radioligand-independent K values for these two receptors. Thus, the atypical neuroleptics appear to fall into two groups, those that have a low affinity for dopamine D2 receptors and those that are selective for dopamine D4 receptors.

摘要

本综述探讨了那些引发低水平帕金森症的非典型抗精神病药物非典型作用的可能受体基础。这样的研究需要抗精神病药物在相关多巴胺和5-羟色胺受体处的解离常数一致且准确。然而,长期以来人们都知道,给定抗精神病药物在多巴胺D2受体处的解离常数在不同实验室之间存在差异。尽管这种差异取决于多个因素,但最近人们认识到,用于测量抗精神病药物与放射性配体之间竞争的放射性配体是一个重要变量。本综述总结了关于这种放射性配体依赖性的信息。一般来说,在膜中溶解度低的放射性配体(即低组织:缓冲液分配系数)会导致抗精神病药物与放射性配体竞争时其解离常数的值较低。因此,通过首先使用在膜中溶解度不同的不同放射性配体来获得抗精神病药物的解离常数,然后可以将数据外推到低或“零”配体溶解度。外推值代表抗精神病药物的放射性配体非依赖性解离常数。这里给出了多巴胺D2和D4受体以及5-羟色胺5-HT2A受体的这些值。此外,这些值与用放射性抗精神病药物本身直接获得的解离常数一致。例如,氯氮平在多巴胺D4受体处的放射性配体非依赖性值为1.6 nM,与用[3H]-氯氮平在D4处直接测量的值一致。然而,由于氯氮平与内源性多巴胺竞争,氯氮平在体内占据多巴胺D4受体的浓度可以推导为约13 nM,与在接受治疗的患者血浆或脊髓液中观察到的12至20 nM的值一致。非典型抗精神病药物瑞莫必利、氯氮平、哌拉平、喹硫平和美哌隆对多巴胺D2受体的亲和力较低(放射性配体非依赖性解离常数为30至90 nM)。这种低亲和力使得后五种药物很容易被尾状核或壳核中高水平的内源性多巴胺取代。大多数典型抗精神病药物在多巴胺D2受体处的放射性配体非依赖性值为0.3至5 nM,这使得它们对内源性多巴胺的取代更具抗性。最后,发现了大鼠僵住症的抗精神病药物剂量与这两种受体的放射性配体非依赖性K值的D2:D4比值之间的关系。因此,非典型抗精神病药物似乎分为两组,一组对多巴胺D2受体亲和力低,另一组对多巴胺D4受体具有选择性。

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