Bøgesø K P, Liljefors T, Arnt J, Hyttel J, Pedersen H
Research Laboratories, H. Lundbeck A/S, Copenhagen-Valby, Denmark.
J Med Chem. 1991 Jul;34(7):2023-30. doi: 10.1021/jm00111a015.
Octoclothepin (1) was resolved into its R and S enantiomers via the diastereomeric tartaric acid salts. The enantiomers were shown to be of high optical purity by 1H NMR with use of the chiral shift reagent (R)-(-)-2,2,2-trifluoro-1-(9-anthryl)ethanol. Pharmacological and biochemical testing confirmed that (S)-1 is the more potent dopamine (DA) D-2 antagonist both in vitro and in vivo, although the R enantiomer still has significant D-2 antagonistic activity. In contrast, both enantiomers were equally active in test models detecting activity at D-1 receptors, serotonin-2 (5-HT2) receptors and alpha 1 adrenoceptors. Contrary to a previous prediction, it was found that norepinephrine (NE) uptake inhibition was confined solely to the S enantiomer. Overall, (S)-1 has a "classical" neuroleptic profile, while the R enantiomer has a more "atypical" profile. These pharmacological profiles seem to be in agreement with the reported clinical profiles of the two enantiomers. A previous conformational study was revised in light of the biochemical test results with enantiomers of known optical purity. Their relative D-2 receptor affinity corresponded well with the calculated conformational energy difference between their "active conformations" deduced from a previously reported new D-2 receptor model. Also the high enantioselectivity of (S)-1 at the NE uptake site could be explained after a detailed conformational analysis showing strict requirements for the orientation of the piperazine lone-pair direction at the NE uptake site.
奥曲氯平(1)通过非对映体酒石酸盐拆分为其R和S对映体。使用手性位移试剂(R)-(-)-2,2,2-三氟-1-(9-蒽基)乙醇通过1H NMR表明对映体具有高光学纯度。药理和生化测试证实,(S)-1在体外和体内都是更有效的多巴胺(DA)D-2拮抗剂,尽管R对映体仍具有显著的D-2拮抗活性。相比之下,在检测D-1受体、5-羟色胺-2(5-HT2)受体和α1肾上腺素能受体活性的测试模型中,两种对映体的活性相同。与先前的预测相反,发现去甲肾上腺素(NE)摄取抑制仅局限于S对映体。总体而言,(S)-1具有“经典”抗精神病药物特征,而R对映体具有更“非典型”的特征。这些药理特征似乎与两种对映体已报道的临床特征一致。根据已知光学纯度对映体的生化测试结果,对先前的构象研究进行了修订。它们相对的D-2受体亲和力与根据先前报道的新D-2受体模型推导的“活性构象”之间计算出的构象能量差非常吻合。在详细的构象分析表明对NE摄取位点处哌嗪孤对方向的取向有严格要求之后,也可以解释(S)-1在NE摄取位点的高对映选择性。