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Identification of Neuropeptide S Antagonists: Structure–Activity RelationshipStudies X-ray Crystallography and in Vivo Evaluation

机译:神经肽S拮抗剂的鉴定:结构-活性关系。研究X射线晶体学和体内评估

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摘要

Modulation of the neuropeptide S (NPS) system has been linked to a variety of CNS disorders such as panic disorder, anxiety, sleeping disorders, asthma, obesity, PTSD, and substance abuse. In this study, a series of diphenyltetrahydro-1H-oxazolo[3,4-α]pyrazin-3(5H)-ones were synthesized and evaluated for antagonist activity at the neuropeptide S receptor. The absolute configuration was determined by chiral resolution of the key synthetic intermediate, followed by analysis of one of the individual enantiomers by X-ray crystallography. The R isomer was then converted to a biologically active compound (>34) that had a Ke of 36 nM. The most potent compound displayed enhanced aqueous solubility compared with the prototypical antagonist SHA-68 and demonstrated favorable pharmacokinetic properties for behavioral assessment. In vivo analysis in mice indicated a significant blockade of NPS induced locomotor activity at an ip dose of 50 mg/kg. This suggests that analogs having improved drug-like properties will facilitate more detailed studies of the neuropeptide S receptor system.
机译:神经肽S(NPS)系统的调节与多种中枢神经系统疾病有关,例如惊恐症,焦虑症,睡眠障碍,哮喘,肥胖症,PTSD和药物滥用。在这项研究中,合成了一系列的二苯基四氢-1H-恶唑并[3,4-α]吡嗪-3(5H)-,并评估了其对神经肽S受体的拮抗活性。通过关键合成中间体的手性拆分,然后通过X射线晶体学分析单个对映异构体之一,确定绝对构型。然后将R异构体转化为Ke为36 nM的生物活性化合物(> 34 )。与原型拮抗剂SHA-68相比,最有效的化合物显示出更高的水溶性,并且表现出良好的药代动力学特性,可用于行为评估。小鼠体内分析表明,ip剂量为50 mg / kg时,NPS引起的自发活动被显着阻断。这表明具有改善的类药物性质的类似物将促进神经肽S受体系统的更详细的研究。

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