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新型N-(反式-4-(2-(4-(苯并[d]异噻唑-3-基)哌嗪-1-基)乙基)环己基)酰胺作为潜在多受体非典型抗精神病药物的合成及药理特性研究

Synthesis and pharmacological characterization of novel N-(trans-4-(2-(4-(benzo[d]isothiazol-3-yl)piperazin-1-yl)ethyl)cyclohexyl)amides as potential multireceptor atypical antipsychotics.

作者信息

Chen Xiao-Wen, Sun Yuan-Yuan, Fu Lei, Li Jian-Qi

机构信息

School of Pharmacy, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, PR China; Novel Technology Center of Pharmaceutical Chemistry, Shanghai Institute of Pharmaceutical Industry, China State Institute of Pharmaceutical Industry, 285 Gebaini Road, Shanghai 201203, PR China.

School of Pharmacy, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, PR China.

出版信息

Eur J Med Chem. 2016 Nov 10;123:332-353. doi: 10.1016/j.ejmech.2016.07.038. Epub 2016 Jul 22.

Abstract

A series of novel benzisothiazolylpiperazine derivatives combining potent dopamine D2 and D3, and serotonin 5-HT1A and 5-HT2A receptor properties were synthesized and evaluated for their potential antipsychotic properties. The most-promising derivative was 9j. The unique pharmacological features of 9j were a high affinity for D2, D3, 5-HT1A, and 5-HT2A receptors, together with a 20-fold selectivity for the D3 versus D2 subtype, and a low affinity for muscarinic M1 (reducing the risk of anticholinergic side effects), and for hERG channels (reducing incidence of QT interval prolongation). In animal behavioral models, 9j inhibited the locomotor-stimulating effects of phencyclidine, blocked conditioned avoidance response, and improved the cognitive deficit in the novel object recognition tests in rats. 9j exhibited a low potential for catalepsy, consistent with results with risperidone. In addition, favorable brain penetration of 9j in rats was detected. These studies have demonstrated that 9j is a potential atypical antipsychotic candidate.

摘要

合成了一系列兼具强效多巴胺D2和D3以及5-羟色胺5-HT1A和5-HT2A受体特性的新型苯并异噻唑基哌嗪衍生物,并对其潜在的抗精神病特性进行了评估。最具潜力的衍生物是9j。9j独特的药理学特性包括对D2、D3、5-HT1A和5-HT2A受体具有高亲和力,对D3亚型与D2亚型的选择性为20倍,对毒蕈碱M1受体(降低抗胆碱能副作用风险)和人醚-去极化激活的钾离子通道(降低QT间期延长发生率)具有低亲和力。在动物行为模型中,9j抑制了苯环利定的运动刺激作用,阻断了条件性回避反应,并改善了大鼠新物体识别试验中的认知缺陷。9j表现出较低的僵住症潜力,与利培酮的结果一致。此外,检测到9j在大鼠体内具有良好的脑渗透性。这些研究表明9j是一种潜在的非典型抗精神病候选药物。

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