首页> 外文期刊>Journal of Medicinal Chemistry >Structure-Activity Relationship, Drug Metabolism and Pharmacokinetics Properties Optimization, and in Vivo Studies of New Brain Penetrant Triple T-Type Calcium Channel Blockers
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Structure-Activity Relationship, Drug Metabolism and Pharmacokinetics Properties Optimization, and in Vivo Studies of New Brain Penetrant Triple T-Type Calcium Channel Blockers

机译:结构-活性关系,药物代谢和药代动力学特性的优化,以及新型脑渗透三重T型钙通道阻滞剂的体内研究。

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摘要

Despite the availability of numerous antiepileptic drugs, 20-30% of epileptic patients are pharmacoresistant with seizures not appropriately controlled. Consequently, new strategies to address this unmet medical need are required. T-type calcium channels play a key role in neuronal excitability and burst firing, and selective triple T-type calcium channel blockers could offer a new way to treat various CNS disorders, in particular epilepsy. Herein we describe the identification of new 1,4-benzodiazepines as brain penetrant and selective triple T-type calcium channel blockers. From racemic hit 4, optimization work led to the preparation of pyridodiazepine 31c with improved physicochemical properties, solubility, and metabolic stability. The racemic mixture was separated by chiral preparative HPLC, and the resulting lead compound (3R,5S)-31c showed promising efficacy in the WAG/Rij-rat model of generalized nonconvulsive absence-like epilepsy.
机译:尽管可获得许多抗癫痫药,但仍有20%至30%的癫痫患者对药物具有耐药性,癫痫发作没有得到适当控制。因此,需要新的策略来解决这种未满足的医疗需求。 T型钙通道在神经元兴奋性和爆发放电中起关键作用,选择性的三重T型钙通道阻滞剂可能为治疗各种中枢神经系统疾病,特别是癫痫病提供新的途径。在这里,我们描述了新的1,4-苯二氮卓类药物作为脑渗透剂和选择性三重T型钙通道阻滞剂的鉴定。从外消旋的第4步开始,优化工作导致制备了具有改进的理化性质,溶解度和代谢稳定性的吡啶二氮卓31c。外消旋混合物通过手性制备型HPLC分离,所得铅化合物(3R,5S)-31c在广义非惊厥性癫痫样癫痫的WAG / Rij-rat模型中显示出有希望的功效。

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