Molecular combination of the dopamine and serotonin scaffolds yield in novel antipsychotic drug candidates - characterization by in vivo experiments.

Arzneimittel-Forschung-Drug Research Pub Date : 2012-05-01 Epub Date: 2012-04-05 DOI:10.1055/s-0032-1306266
M Schulze, O Siol, D Robaa, F K U Mueller, C Enzensperger, C Fleck, J Lehmann
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引用次数: 5

Abstract

Serotonin and dopamine play an important role in the aetiology of schizophrenia. Combination of the structural scaffolds of both neurotransmitters in a single molecule lead to aromatic [d,g]-bisannelated azecine derivatives, which have been shown to be nanomolar to subnanomolar dopamine D1-D5 receptor antagonists with a preference for the D1 family. In this work the potential antipsychotic activity of some azecine derivatives was predicted by their dopamine receptor affinities obtained in vitro from radioligand binding experiments and conclusively confirmed in vivo (rats) by applying a conditioned avoidance model. Furthermore, the compounds were tested in vivo for the development of catalepsy, which is a predictive parameter for extra-pyramidal side-effects caused by many antipsychotics. The investigated azecines displayed low cytotoxicity, and the affinities for human dopamine D1-D5 and serotonin 5-HT2 A receptors were in a nanomolar range. In vivo, their antipsychotic activities in the rat model were comparable with those of haloperidol and risperidone, but revealed a 2-5 times better therapeutic range with regard to catalepsy. Preliminary tests for oral bioavailability also revealed promising results for this new class of potential antipsychotic compounds. In conclusion, our in vivo experiments show that aromatic [d,g]-annelated azecines represent a novel and advantageous class of potential atypical neuroleptics.

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多巴胺和5 -羟色胺支架在新型抗精神病药物候选物中的分子组合——体内实验表征。
血清素和多巴胺在精神分裂症的病因学中起重要作用。两种神经递质结构支架在单个分子中的结合导致芳香[d,g]-双annelated氮杂嗪衍生物,已被证明是纳米摩尔到亚纳米摩尔多巴胺D1- d5受体拮抗剂,偏爱D1家族。在这项工作中,一些氮杂嗪衍生物的潜在抗精神病活性是通过它们在体外的多巴胺受体亲和力来预测的,并通过条件回避模型在体内(大鼠)得到最终证实。此外,这些化合物在体内测试了猝倒的发展,这是许多抗精神病药物引起的锥体外副作用的预测参数。所研究的氮杂素具有较低的细胞毒性,对人多巴胺D1-D5和5-羟色胺5- ht2a受体的亲和力在纳摩尔范围内。在体内,它们在大鼠模型中的抗精神病活性与氟哌啶醇和利培酮相当,但对麻痹的治疗范围比氟哌啶醇和利培酮好2-5倍。口服生物利用度的初步测试也显示了这类新型潜在抗精神病药物的良好结果。总之,我们的体内实验表明芳香[d,g]-annelated氮杂素代表了一类新的和有利的潜在非典型抗精神病药。
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