Aripiprazole, A Novel Atypical Antipsychotic Drug with a Unique and Robust Pharmacology

被引:0
作者
David A Shapiro
Sean Renock
Elaine Arrington
Louis A Chiodo
Li-Xin Liu
David R Sibley
Bryan L Roth
Richard Mailman
机构
[1] Case Western Reserve University Medical School,Department of Biochemistry
[2] the University of North Carolina School of Medicine,Department of Psychiatry and Pharmacology and Neurobiology Curriculum
[3] Texas Tech University Health Science Center,Department of Pharmacology
[4] National Institute of Neurological Disorders and Stroke,Department of Neurosciences
[5] National Institutes of Health,undefined
[6] NIMH Psychoactive Drug Screening Program,undefined
[7] Case Western Reserve University Medical School,undefined
[8] Case Western Reserve University Medical School,undefined
来源
Neuropsychopharmacology | 2003年 / 28卷
关键词
atypical antipsychotic; schizophrenia; aripiprazole; partial agonist; receptor pharmacology;
D O I
暂无
中图分类号
学科分类号
摘要
Atypical antipsychotic drugs have revolutionized the treatment of schizophrenia and related disorders. The current clinically approved atypical antipsychotic drugs are characterized by having relatively low affinities for D2-dopamine receptors and relatively high affinities for 5-HT2A serotonin receptors (5-HT, 5-hydroxytryptamine (serotonin)). Aripiprazole (OPC-14597) is a novel atypical antipsychotic drug that is reported to be a high-affinity D2-dopamine receptor partial agonist. We now provide a comprehensive pharmacological profile of aripiprazole at a large number of cloned G protein-coupled receptors, transporters, and ion channels. These data reveal a number of interesting and potentially important molecular targets for which aripiprazole has affinity. Aripiprazole has highest affinity for h5-HT2B-, hD2L-, and hD3-dopamine receptors, but also has significant affinity (5–30 nM) for several other 5-HT receptors (5-HT1A, 5-HT2A, 5-HT7), as well as α1A-adrenergic and hH1-histamine receptors. Aripiprazole has less affinity (30–200 nM) for other G protein-coupled receptors, including the 5-HT1D, 5-HT2C, α1B-, α2A-, α2B-, α2C-, β1-, and β2-adrenergic, and H3-histamine receptors. Functionally, aripiprazole is an inverse agonist at 5-HT2B receptors and displays partial agonist actions at 5-HT2A, 5-HT2C, D3, and D4 receptors. Interestingly, we also discovered that the functional actions of aripiprazole at cloned human D2-dopamine receptors are cell-type selective, and that a range of actions (eg agonism, partial agonism, antagonism) at cloned D2-dopamine receptors are possible depending upon the cell type and function examined. This mixture of functional actions at D2-dopamine receptors is consistent with the hypothesis proposed by Lawler et al (1999) that aripiprazole has ‘functionally selective’ actions. Taken together, our results support the hypothesis that the unique actions of aripiprazole in humans are likely a combination of ‘functionally selective’ activation of D2 (and possibly D3)-dopamine receptors, coupled with important interactions with selected other biogenic amine receptors—particularly 5-HT receptor subtypes (5-HT1A, 5-HT2A).
引用
收藏
页码:1400 / 1411
页数:11
相关论文
共 262 条
[1]  
Arnt J(1998)Do novel antipsychotics have similar pharmacological characteristics? A review of the evidence Neuropsychopharmacology 18 63-101
[2]  
Skarsfeldt T(2001)The dynamin-dependent, arrestin-independent internalization of 5-hydroxytryptamine 2A (5-HT2A) serotonin receptors reveals differential sorting of arrestins and 5-HT2A receptors during endocytosis J Biol Chem 276 8269-8277
[3]  
Bhatnagar A(2002)Aripiprazole, a novel antipsychotic, is a high-affinity partial agonist at human dopamine D2 receptors J Pharmacol Exp Ther 302 381-389
[4]  
Willins DL(1992)Identification of receptor domains that modify ligand binding to 5-hydroxytryptamine2 and 5-hydroxytryptamine1c serotonin receptors Mol Pharmacol 42 627-633
[5]  
Gray JA(1976)Dopamine receptor binding predicts clinical and pharmacological potencies of antischizophrenic drugs Science 192 481-483
[6]  
Woods J(2000)Agonist high and low affinity state ratios predict drug intrinsic activity and a revised ternary complex mechanism at serotonin 5-HT(2A) and 5-HT(2C) receptors Synapse 35 144-150
[7]  
Benovic JL(1994)The role of serotonin receptor subtypes in the behavioural effects of neuroleptic drugs. A paw test study in rats Eur J Neurosci 6 1-8
[8]  
Roth BL(2001)New 1-aryl-4-(biarylmethylene)piperazines as potential atypical antipsychotics sharing dopamine D(2)-receptor and serotonin 5-HT(1A)-receptor affinities Bioorg Med Chem Lett 11 2345-2349
[9]  
Burris KD(1993)Paradoxical regulation of dopamine receptors in transfected 293 cells Mol Pharmacol 44 371-379
[10]  
Molski TF(2000)Possible role of valvular serotonin 5-HT(2B) receptors in the cardiopathy associated with fenfluramine Mol Pharmacol 57 75-81