Literature DB >> 26754558

Substituted 5,6-(Dihydropyrido[3,4-d]pyrimidin-7(8H)-yl)-methanones as P2X7 Antagonists.

Jeannie Ziff1, Dale A Rudolph1, Brice Stenne1, Tatiana Koudriakova1, Brian Lord1, Pascal Bonaventure1, Timothy W Lovenberg1, Nicholas I Carruthers1, Anindya Bhattacharya1, Michael A Letavic1, Brock T Shireman1.   

Abstract

We describe the synthesis of a novel class of brain penetrating P2X7 antagonists with high potency at both the rat and human P2X7 receptors. Disclosed herein are druglike molecules with demonstrated target engagement of the rat P2X7 receptors after an oral dose. Specifically, compound 20 occupied the P2X7 receptors >80% over the 6 h time course as measured by an ex vivo radioligand binding experiment. In a dose-response assay, this molecule has a plasma EC50 of 8 ng/mL. Overall, 20 has suitable druglike properties and pharmacokinetics in rat and dog. This molecule and others disclosed herein will serve as additional tools to elucidate the role of the P2X7 receptor in neuropsychiatric disorders.

Entities:  

Keywords:  5,6-dihydropyrido[3,4-d]pyrimidin-7(8H)-yl) methanones; CNS; IL-1β; P2X7; depression; neuroinflammation

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Substances:

Year:  2016        PMID: 26754558     DOI: 10.1021/acschemneuro.5b00304

Source DB:  PubMed          Journal:  ACS Chem Neurosci        ISSN: 1948-7193            Impact factor:   4.418


  3 in total

1.  Pharmacologic characterizations of a P2X7 receptor-specific radioligand, [11C]GSK1482160 for neuroinflammatory response.

Authors:  Junbin Han; Hui Liu; Chunling Liu; Hongjun Jin; Joel S Perlmutter; Terrance M Egan; Zhude Tu
Journal:  Nucl Med Commun       Date:  2017-05       Impact factor: 1.690

2.  P2X1 Selective Antagonists Block HIV-1 Infection through Inhibition of Envelope Conformation-Dependent Fusion.

Authors:  Alexandra Y Soare; Hagerah S Malik; Natasha D Durham; Tracey L Freeman; Raymond Alvarez; Foramben Patel; Namita Satija; Chitra Upadhyay; Catarina E Hioe; Benjamin K Chen; Talia H Swartz
Journal:  J Virol       Date:  2020-02-28       Impact factor: 5.103

Review 3.  P2X7 Receptor-Associated Programmed Cell Death in the Pathophysiology of Hemorrhagic Stroke.

Authors:  Hengli Zhao; Yujie Chen; Hua Feng
Journal:  Curr Neuropharmacol       Date:  2018       Impact factor: 7.363

  3 in total

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