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Featured researches published by Yansheng Zhai.


Bioorganic & Medicinal Chemistry Letters | 2009

Identification and SAR of novel diaminopyrimidines. Part 1: The discovery of RO-4, a dual P2X3/P2X2/3 antagonist for the treatment of pain

David S. Carter; Muzaffar Alam; Hai-Ying Cai; Michael Patrick Dillon; Anthony P. D. W. Ford; Joel R Gever; Alam Jahangir; Clara Jeou Jen Lin; Amy Geraldine Moore; Paul J. Wagner; Yansheng Zhai

P2X purinoceptors are ligand-gated ion channels whose endogenous ligand is ATP. Both the P2X(3) and P2X(2/3) receptor subtypes have been shown to play an important role in the regulation of sensory function and dual P2X(3)/P2X(2/3) antagonists offer significant potential for the treatment of pain. A high-throughput screen of the Roche compound collection resulted in the identification of a novel series of diaminopyrimidines; subsequent optimization resulted in the discovery of RO-4, a potent, selective and drug-like dual P2X(3)/P2X(2/3) antagonist.


Bioorganic & Medicinal Chemistry Letters | 2009

Identification and SAR of novel diaminopyrimidines. Part 2: The discovery of RO-51, a potent and selective, dual P2X3/P2X2/3 antagonist for the treatment of pain

Alam Jahangir; Muzaffar Alam; David S. Carter; Michael Patrick Dillon; Daisy Joe Du Bois; Anthony P. D. W. Ford; Joel R Gever; Clara Jeou Jen Lin; Paul J. Wagner; Yansheng Zhai; Jeff Zira

The purinoceptor subtypes P2X(3) and P2X(2/3) have been shown to play a pivotal role in models of various pain conditions. Identification of a potent and selective dual P2X(3)/P2X(2/3) diaminopyrimidine antagonist RO-4 prompted subsequent optimization of the template. This paper describes the SAR and optimization of the diaminopyrimidine ring and particularly the substitution of the 2-amino group. The discovery of the highly potent and drug-like dual P2X(3)/P2X(2/3) antagonist RO-51 is presented.


Bioorganic & Medicinal Chemistry Letters | 2010

Discovery and optimization of RO-85, a novel drug-like, potent, and selective P2X3 receptor antagonist

Christine E. Brotherton-Pleiss; Michael Patrick Dillon; Anthony P. D. W. Ford; Joel R Gever; David S. Carter; Shelley K. Gleason; Clara Jeou Jen Lin; Amy Geraldine Moore; Anthony W. Thompson; Marzia Villa; Yansheng Zhai

Despite the extensive literature describing the role of the ATP-gated P2X(3) receptors in a variety of physiological processes the potential of antagonists as therapeutic agents has been limited by the lack of drug-like selective molecules. In this paper we report the discovery and optimization of RO-85, a novel drug-like, potent and selective P2X(3) antagonist. High-throughput screening of the Roche compound collection identified a small hit series of heterocyclic amides from a large parallel synthesis library. Rapid optimization, facilitated by high-throughput synthesis, focusing on increasing potency and improving drug-likeness resulted in the discovery of RO-85.


Bioorganic & Medicinal Chemistry Letters | 2008

Novel 3,3-disubstituted pyrrolidines as selective triple serotonin/norepinephrine/dopamine reuptake inhibitors

Linda M. Bannwart; David S. Carter; Hai-Ying Cai; Jason Chi-Chung Choy; Robert Greenhouse; Saul Jaime-Figueroa; Pravin Iyer; Clara Jeou Jen Lin; Eun Kyung Lee; Matthew C. Lucas; Stephen M. Lynch; Ann Marie Madera; Amy Geraldine Moore; Kerem Erol Ozboya; Lubica Raptova; Ralf Roetz; Ryan Craig Schoenfeld; Karin Ann Stein; Sandra Steiner; Marzia Villa; Robert James Weikert; Yansheng Zhai

A series of 3,3-disubstituted pyrrolidine monoamine triple reuptake inhibitors were discovered. Analogues with low nanomolar potency, good human in vitro microsomal stability and in vitro permeability, and low drug-drug interaction potential are described. One example showed in vivo anti-depressant-like effects in the mouse tail suspension assay with a minimum effective dose of 30 mg/kg i.p.


Bioorganic & Medicinal Chemistry Letters | 2010

Design, synthesis, and biological evaluation of new monoamine reuptake inhibitors with potential therapeutic utility in depression and pain

Matthew C. Lucas; Robert James Weikert; David S. Carter; Hai-Ying Cai; Robert Greenhouse; Pravin Iyer; Clara Jeou Jen Lin; Eun Kyung Lee; Ann Marie Madera; Amy Geraldine Moore; Kerem Erol Ozboya; Ryan Craig Schoenfeld; Sandra Steiner; Yansheng Zhai; Stephen M. Lynch

Two new series of monoamine triple reuptake inhibitors (TRIs) have been discovered through scaffold homologation of our recently reported series of 3,3-disubstituted pyrrolidine TRIs. The regioisomeric 2- and 3-ketopyrrolidines demonstrated high levels of potency against all three monoamine transporters as well as good human in vitro stability, low drug-drug interaction potential and a decreased propensity for hERG channel binding. Representative compounds from these series displayed good in vivo pharmacokinetics and high monoamine receptor occupancies which are indicators of good brain penetration.


Archive | 2006

Inhibitors of P2X3

Christine E. Brotherton-Pleiss; Michael Patrick Dillon; Shelley K. Gleason; Clara Jeou Jen Lin; Ryan Craig Schoenfeld; Marzia Villa; Yansheng Zhai


Archive | 2006

Piperidine and piperazine derivatives as p2x3 antagonists

Christine E. Brotherton-Pleiss; Michael Patrick Dillon; Shelley K. Gleason; Clara Jeou Jen Lin; Ryan Craig Schoenfeld; Marzia Villa; Yansheng Zhai


Archive | 2011

Pyrazolo[1,5a]pyrimidine and thieno[3,2b]pyrimidine derivatives as irak4 modulators

Nidhi Arora; Shaoqing Chen; Johannes Cornelius Hermann; Andreas Kuglstatter; Sharada Shenvi Labadie; Clara Jeou Jen Lin; Matthew C. Lucas; Amy Geraldine Moore; Eva Papp; Francisco Xavier Talamas; Jutta Wanner; Yansheng Zhai


Archive | 2011

PYRAZOLO[1,5a]PYRIMIDINE DERIVATIVES AS IRAK4 MODULATORS

Nidhi Arora; Shaoqing Chen; Johannes Cornelius Hermann; Andreas Kuglstatter; Sharada Shenvi Labadie; Clara Jeou Jen Lin; Matthew C. Lucas; Amy Geraldine Moore; Eva Papp; Francisco Xavier Talamas; Jutta Wanner; Yansheng Zhai


Archive | 2004

Methyl indoles and methyl pyrrolopyridines as alpha-1 adrenergic agonists

Michael Patrick Dillon; Clara Jeou Jen Lin; Amy Geraldine Moore; Counde O'yang; Yansheng Zhai

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