首页> 外文期刊>Journal of Medicinal Chemistry >Design and Synthesis of Novel Deuterated Ligands Functionally Selective for the gamma-Aminobutyric Acid Type A Receptor (GABA(A)R) alpha 6 Subtype with Improved Metabolic Stability and Enhanced Bioavailability
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Design and Synthesis of Novel Deuterated Ligands Functionally Selective for the gamma-Aminobutyric Acid Type A Receptor (GABA(A)R) alpha 6 Subtype with Improved Metabolic Stability and Enhanced Bioavailability

机译:用于γ-氨基丁酸的新型氘代配体的设计和合成γ-氨基丁酸型受体(GABA(A)R)α6亚型,具有改善的代谢稳定性和增强的生物利用度

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摘要

Recent reports indicate that alpha 6/beta 2/3 gamma 2 GABA(A)R selective ligands may be important for the treatment of trigeminal activation-related pain and neuropsychiatric disorders with sensori-motor gating deficits. Based on 3 functionally alpha 6/beta 2/3 gamma 2 GABA(A)R selective pyrazoloquinolinones, 42 novel analogs were synthesized, and their in vitro metabolic stability and cytotoxicity as well as their in vivo pharmacokinetics, basic behavioral pharmacology, and effects on locomotion were investigated. Incorporation of deuterium into the methoxy substituents of the ligands increased their duration of action via improved metabolic stability and bioavailability, while their selectivity for the GABA(A)R a alpha 6 subtype was retained. 8b was identified as the lead compound with a substantially improved pharmacokinetic profile. The ligands allosterically modulated diazepam insensitive alpha 6/beta 2/3 gamma 2 GABA(A)Rs and were functionally silent at diazepam sensitive alpha 6/beta 2/3 gamma 2 GABA(A)Rs, thus no sedation was detected. In addition, these analogs were not cytotoxic, which render them interesting candidates for treatment of CNS disorders mediated by GABA(A)R alpha 6/beta 2/3 gamma 2 subtypes.
机译:最近的报告表明的α6 /β2/3伽玛2 GABA(A)R的选择性配体可为三叉活化相关的疼痛和感觉 - 运动门控缺陷的神经精神障碍治疗重要。基于3个功能的α6 /β2/3伽玛2 GABA(A)R选择性pyrazoloquinolinones,42个新颖类似物合成,并且它们的体外代谢稳定性和细胞毒性以及它们在体内的药物动力学,基本行为药理学,并且有关效果运动进行了调查。氘到配体的取代基甲氧基的掺入通过改进的代谢稳定性和生物利用度增加了它们的作用持续时间,而它们对GABA选择性(A)R一阿尔法6亚型被保留。图8b被鉴定为具有显着改善的药物动力学曲线,铅化合物。的配位体变构调制的地西泮不敏感的α6 /β2/3伽玛2 GABA(A)Rs和分别在地西泮敏感的α6 /β2/3伽玛2 GABA(A)Rs时,因而没有检测到镇静功能沉默。此外,这些类似物不是细胞毒性的,这使得它们用于治疗由GABA(A)R 6的α/β2/3伽玛2个亚型介导的CNS疾病的有趣的候选者。

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  • 来源
    《Journal of Medicinal Chemistry》 |2018年第6期|共25页
  • 作者单位

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

    Univ Belgrade Dept Pharmacol Fac Pharm Vojvode Stepe 450 Belgrade 11221 Serbia;

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

    Univ Belgrade Dept Pharmaceut Chem Fac Pharm Vojvode Stepe 450 Belgrade 11221 Serbia;

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

    TU Wien Inst Appl Synthet Chem Getreidemarkt 9-163 A-1060 Vienna Austria;

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

    Natl Taiwan Univ Coll Med Dept Pharmacol Taipei 10051 Taiwan;

    Med Univ Vienna Dept Mol Neurosci Ctr Brain Res Spitalgasse 4 A-1090 Vienna Austria;

    TU Wien Inst Appl Synthet Chem Getreidemarkt 9-163 A-1060 Vienna Austria;

    Univ Belgrade Dept Pharmacol Fac Pharm Vojvode Stepe 450 Belgrade 11221 Serbia;

    Med Univ Vienna Dept Mol Neurosci Ctr Brain Res Spitalgasse 4 A-1090 Vienna Austria;

    Univ Wisconsin Dept Chem &

    Biochem Milwaukee Inst Drug Discovery 3210 N Cramer St Milwaukee WI 53211 USA;

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  • 正文语种 eng
  • 中图分类 药学;
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