Ohmori J, Maeno K, Hidaka K, Nakato K, Matsumoto M, Tada S, Hattori H, Sakamoto S, Tsukamoto S, Usuda S, Mase T
Institute for Drug Discovery Research, Yamanouchi Pharmaceutical Company Limited, Ibaraki, Japan.
J Med Chem. 1996 Jul 5;39(14):2764-72. doi: 10.1021/jm9601720.
In this study, we synthesized a series of (S)-N-(3-pyrrolidinyl)benzamide derivatives, 1, 2a-d, 5a-1, and 7, and their enantiomers, (R)-1 and (R)-5c-e, and evaluated their binding affinity for cloned dopamine D2, D3, and D4 receptors and their inhibitory activity against apomorphine-induced climbing behavior in mice. The results indicate that D2, D3, and D4 receptors have different bulk tolerance (D4 > D3 > D2) for the substituent of the 4-amino group (R1) on the benzamide nuclei and that cyclopropyl-, cyclobutyl-, and cyclopentylcarbonyl groups likely possess adequate bulkiness with respect to D3 and D4 affinity and selectivity over D2 receptors in this series. The results also suggested that the N-substituent (R2) on the pyrrolidin-3-yl group performs an important role in expressing affinity for D2, D3, and D4 receptors and selectivity among the respective subtypes. One of the compounds, (S)-(+)-N-(1-benzyl-3-pyrrolidinyl)-5-chloro-4-[(cyclopropylcarbonyl+ ++) amino]-2-methoxybenzamide (5c) (YM-43611), showed high affinity for D3 and D4 receptors (Ki values of 21 and 2.1 nM, respectively) with 110-fold D4 selectivity and 10-fold D3 preference over D2 receptors and weak or negligible affinity for representative neurotransmitter receptors. Compound 5c displayed potent antipsychotic activity in inhibiting apomorphine-induced climbing behavior in mice (ED50 value, 0.32 mg/kg sc).
在本研究中,我们合成了一系列(S)-N-(3-吡咯烷基)苯甲酰胺衍生物1、2a - d、5a - 1和7及其对映体(R)-1和(R)-5c - e,并评估了它们对克隆的多巴胺D2、D3和D4受体的结合亲和力以及对小鼠阿扑吗啡诱导的攀爬行为的抑制活性。结果表明,D2、D3和D4受体对苯甲酰胺核上4-氨基(R1)取代基具有不同的体积耐受性(D4 > D3 > D2),并且在该系列中,环丙基、环丁基和环戊基羰基相对于D3和D4受体的亲和力以及对D2受体的选择性可能具有足够的体积。结果还表明,吡咯烷-3-基上的N-取代基(R2)在表达对D2、D3和D4受体的亲和力以及各亚型之间的选择性方面起着重要作用。其中一种化合物,(S)-(+)-N-(1-苄基-3-吡咯烷基)-5-氯-4-[(环丙基羰基)氨基]-2-甲氧基苯甲酰胺(5c)(YM-43611),对D3和D4受体表现出高亲和力(分别为21和2.1 nM的Ki值),对D4受体的选择性为110倍,对D3受体的偏好性比对D2受体高10倍,对代表性神经递质受体的亲和力较弱或可忽略不计。化合物5c在抑制小鼠阿扑吗啡诱导的攀爬行为方面表现出强效抗精神病活性(ED50值,0.32 mg/kg皮下注射)。