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基于吡咯并[1,3]苯并硫氮杂卓的5-羟色胺和多巴胺受体拮抗剂。分子建模、进一步的构效关系研究以及新型非典型抗精神病药物的鉴定。

Pyrrolo[1,3]benzothiazepine-based serotonin and dopamine receptor antagonists. Molecular modeling, further structure-activity relationship studies, and identification of novel atypical antipsychotic agents.

作者信息

Campiani Giuseppe, Butini Stefania, Fattorusso Caterina, Catalanotti Bruno, Gemma Sandra, Nacci Vito, Morelli Elena, Cagnotto Alfredo, Mereghetti Ilario, Mennini Tiziana, Carli Miriana, Minetti Patrizia, Di Cesare M Assunta, Mastroianni Domenico, Scafetta Nazzareno, Galletti Bruno, Stasi M Antonietta, Castorina Massimo, Pacifici Licia, Vertechy Mario, Di Serio Stefano, Ghirardi Orlando, Tinti Ornella, Carminati Paolo

机构信息

Dipartimento Farmaco Chimico Tecnologico, Via Aldo Moro and European Research Centre for Drug Discovery and Development, Universitá degli Studi di Siena, 53100 Siena, Italy.

出版信息

J Med Chem. 2004 Jan 1;47(1):143-57. doi: 10.1021/jm0309811.

Abstract

Recently we reported the pharmacological characterization of the 9,10-dihydropyrrolo[1,3]benzothiazepine derivative (S)-(+)-8 as a novel atypical antipsychotic agent. This compound had an optimum pK(i) 5-HT(2A)/D(2) ratio of 1.21 (pK(i) 5-HT(2A) = 8.83; pK(i) D(2) = 7.79). The lower D(2) receptor affinity of (S)-(+)-8 compared to its enantiomer was explained by the difficulty in reaching the conformation required to optimally fulfill the D(2) pharmacophore. With the aim of finding novel atypical antipsychotics we further investigated the core structure of (S)-(+)-8, synthesizing analogues with specific substituents; the structure-activity relationship (SAR) study was also expanded with the design and synthesis of other analogues characterized by a pyrrolo[2,1-b][1,3]benzothiazepine skeleton, substituted on the benzo-fused ring or on the pyrrole system. On the 9,10-dihydro analogues the substituents introduced on the pyrrole ring were detrimental to affinity for dopamine and for 5-HT(2A) receptors, but the introduction of a double bond at C-9/10 on the structure of (S)-(+)-8 led to a potent D(2)/5-HT(2A) receptor ligand with a typical binding profile (9f, pK(i) 5-HT(2A)/D(2) ratio of 1.01, log Y = 8.43). Then, to reduce D(2) receptor affinity and restore atypicality on unsaturated analogues, we exploited the effect of specific substitutions on the tricyclic system of 9f. Through a molecular modeling approach we generated a novel series of potential atypical antipsychotic agents, with optimized 5HT(2A)/D(2) receptor affinity ratios and that were easier to synthesize and purify than the reference compound (S)-(+)-8. A number of SAR trends were identified, and among the analogues synthesized and tested in binding assays, 9d and 9m were identified as the most interesting, giving atypical log Y scores respectively 4.98 and 3.18 (pK(i) 5-HT(2A)/D(2) ratios of 1.20 and 1.30, respectively). They had a multireceptor affinity profile and could be promising atypical agents. Compound 9d, whose synthesis is easier and whose binding profile is atypical (log Y score similar to that of olanzapine, 3.89), was selected for further biological investigation. Pharmacological and biochemical studies confirmed an atypical antipsychotic profile in vivo. The compound was active on conditioned avoidance response at 1.1 mg/kg, a dose 100-times lower than that required to cause catalepsy (ED(50) >90 mg/kg), it induced a negligible increase of prolactin serum levels after single and multiple doses, and antagonized the cognitive impairment induced by phencyclidine. In conclusion, the pharmacological profile of 9d proved better than clozapine and olanzapine, making this compound a potential clinical candidate.

摘要

最近我们报道了9,10 - 二氢吡咯并[1,3]苯并硫氮杂䓬衍生物(S)-(+)-8作为一种新型非典型抗精神病药物的药理学特性。该化合物的最佳pK(i) 5 - HT(2A)/D(2)比值为1.21(pK(i) 5 - HT(2A) = 8.83;pK(i) D(2) = 7.79)。与对映体相比,(S)-(+)-8对D(2)受体的亲和力较低,这是由于难以达到最佳满足D(2)药效基团所需的构象。为了寻找新型非典型抗精神病药物,我们进一步研究了(S)-(+)-8的核心结构,合成了带有特定取代基的类似物;通过设计和合成以吡咯并[2,1 - b][1,3]苯并硫氮杂䓬骨架为特征、在苯并稠环或吡咯系统上有取代基的其他类似物,结构 - 活性关系(SAR)研究也得到了扩展。在9,10 - 二氢类似物中,吡咯环上引入的取代基对多巴胺和5 - HT(2A)受体的亲和力不利,但在(S)-(+)-8的结构中C - 9/10处引入双键导致产生了一种具有典型结合特征的强效D(2)/5 - HT(2A)受体配体(9f,pK(i) 5 - HT(2A)/D(2)比值为1.01,log Y = 8.43)。然后,为了降低不饱和类似物对D(2)受体的亲和力并恢复其非典型性,我们利用了9f三环系统上特定取代的作用。通过分子建模方法,我们生成了一系列新型潜在非典型抗精神病药物,其5HT(2A)/D(2)受体亲和力比值得到优化,并且比参考化合物(S)-(+)-8更易于合成和纯化。确定了许多SAR趋势,在结合试验中合成和测试的类似物中,9d和9m被认为是最有意义的,其非典型log Y分数分别为4.98和3.18(pK(i) 5 - HT(2A)/D(2)比值分别为1.20和1.30)。它们具有多受体亲和力特征,可能是有前景的非典型药物。化合物9d的合成更容易,其结合特征是非典型的(log Y分数与奥氮平相似,为3.89),被选用于进一步的生物学研究。药理学和生化研究证实了其在体内的非典型抗精神病特征。该化合物在1.1 mg/kg时对条件性回避反应有活性,此剂量比引起僵住反应所需剂量低100倍(ED(50) >90 mg/kg),单次和多次给药后催乳素血清水平的升高可忽略不计,并且拮抗了苯环利定诱导的认知障碍。总之,9d的药理学特征证明优于氯氮平和奥氮平,使该化合物成为潜在的临床候选药物。

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