Claudi F, Di Stefano A, Napolitani F, Cingolani G M, Giorgioni G, Fontenla J A, Montenegro G Y, Rivas M E, Rosa E, Michelotto B, Orlando G, Brunetti L
Dipartimento di Scienze Chimiche, Università di Camerino, Via S. Agostino 1, 62032 Camerino (MC), Italy.
J Med Chem. 2000 Feb 24;43(4):599-608. doi: 10.1021/jm991034o.
The N-methyl, N-ethyl, and N-n-propyl derivatives of 5-hydoxy- and 10-hydroxy-2,3,12,12a-tetrahydro-1H-[1]benzoxepino[2,3, 4-ij]isoquinolines were prepared as monophenolic ligands for the dopamine receptor and evaluated for their affinity at D(1)-like and D(2)-like subtypes. All compounds showed very low D(1) affinities. This could be ascribed to the absence of a catechol nucleus or of the beta-phenyldopamine pharmacophore. Only the N-methyl-5-hydroxy- (5a), N-methyl-10-hydroxy- (6a), and N-methyl-4-bromo-10-methoxy-2,3, 12,12a-tetrahydro-1H-[1]benzoxepino[2,3,4-ij]isoquinolines (26a) bound the D(2) receptors with low affinity, in the same range as dopamine. In compounds 5a and 6a, the 2-(3-hydroxyphenyl)ethylamine moiety does not meet the requirements of the D(2) agonist pharmacophore: namely, the 2-(3-hydroxyphenyl)ethylamine does not reach the trans, fully extended conformation. The three compounds did not interact with recombinant human D(4) receptors, and only 5a showed low affinity for rat recombinant D(3) receptors. Analysis of the influence of Na(+) on [(3)H]spiperone binding showed that 5a displays a potential dopamine D(2) agonist profile, whereas 6a probably has a dopamine D(2) antagonist activity. The D(2) agonist activity of 5a was proved by the effects on prolactin release from primary cultures of rat anterior pituitary cells.
制备了5-羟基-和10-羟基-2,3,12,12a-四氢-1H-[1]苯并氧杂环庚并[2,3,4-ij]异喹啉的N-甲基、N-乙基和N-丙基衍生物作为多巴胺受体的单酚配体,并评估了它们对D(1)样和D(2)样亚型的亲和力。所有化合物对D(1)的亲和力都非常低。这可能归因于缺乏儿茶酚核或β-苯基多巴胺药效团。只有N-甲基-5-羟基-(5a)、N-甲基-10-羟基-(6a)和N-甲基-4-溴-10-甲氧基-2,3,12,12a-四氢-1H-[1]苯并氧杂环庚并[2,3,4-ij]异喹啉(26a)以与多巴胺相同的低亲和力结合D(2)受体。在化合物5a和6a中,2-(3-羟基苯基)乙胺部分不符合D(2)激动剂药效团的要求:即2-(3-羟基苯基)乙胺没有达到反式、完全伸展的构象。这三种化合物不与重组人D(4)受体相互作用,只有5a对大鼠重组D(3)受体显示出低亲和力。对Na(+)对[(3)H]螺哌啶结合影响的分析表明,5a表现出潜在的多巴胺D(2)激动剂特征,而6a可能具有多巴胺D(2)拮抗剂活性。5a对大鼠垂体前叶细胞原代培养物催乳素释放的影响证明了其D(2)激动剂活性。