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Dive into the research topics where Ruifang Wang is active.

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Featured researches published by Ruifang Wang.


Organic Letters | 2012

Palladium-Catalyzed Direct Arylation of Imidazolone N-Oxides with Aryl Bromides and Its Application in the Synthesis of GSK2137305

He Zhao; Ruifang Wang; Ping Chen; Brian T. Gregg; Ming Min Hsia; Wei Zhang

The palladium-catalyzed direct arylation of imidazolone N-oxides with aryl bromides to afford the corresponding 4-aryl imidazolone N-oxides is described. This method has been successfully used for the synthesis of GSK2137305.


Bioorganic & Medicinal Chemistry Letters | 2015

Discovery of a new chemical series of BRD4(1) inhibitors using protein-ligand docking and structure-guided design.

Bryan Cordell Duffy; Shuang Liu; Gregory Scott Martin; Ruifang Wang; Ming Min Hsia; He Zhao; Cheng Guo; Michael Ellis; John F. Quinn; Olesya A. Kharenko; Karen Norek; Emily M. Gesner; Peter R. Young; Kevin G. McLure; Gregory S. Wagner; Damodharan Lakshminarasimhan; Andre White; Robert K. Suto; Henrik C. Hansen; Douglas B. Kitchen

Bromodomains are key transcriptional regulators that are thought to be druggable epigenetic targets for cancer, inflammation, diabetes and cardiovascular therapeutics. Of particular importance is the first of two bromodomains in bromodomain containing 4 protein (BRD4(1)). Protein-ligand docking in BRD4(1) was used to purchase a small, focused screening set of compounds possessing a large variety of core structures. Within this set, a small number of weak hits each contained a dihydroquinoxalinone ring system. We purchased other analogs with this ring system and further validated the new hit series and obtained improvement in binding inhibition. Limited exploration by new analog synthesis showed that the binding inhibition in a FRET assay could be improved to the low μM level making this new core a potential hit-to-lead series. Additionally, the predicted geometries of the initial hit and an improved analog were confirmed by X-ray co-crystallography with BRD4(1).


Archive | 2014

Novel bicyclic bromodomain inhibitors

Bryan Cordell Duffy; Shuang Liu; John F. Quinn; Ruifang Wang; May Xiaowu Jiang; Gregory Scott Martin; Gregory S. Wagner; Peter R. Young


Archive | 2013

Novel heterocyclic compounds as bromodomain inhibitors

Shuang Liu; Bryan Cordell Duffy; John F. Quinn; May Xiaowu Jiang; Ruifang Wang; Gregory Scott Martin; He Zhao; Bruce Francis Molino; Peter R. Young


Archive | 2014

Novel substituted bicyclic compounds as bromodomain inhibitors

Shuang Liu; John F. Quinn; Bryan Cordell Duffy; Ruifang Wang; May Xiaowu Jiang; Gregory Scott Martin; He Zhao; Michael Ellis; Gregory S. Wagner; Peter R. Young


Tetrahedron Letters | 2009

Rapid Ti(Oi-Pr)4 facilitated synthesis of α,α,α-trisubstituted primary amines by the addition of Grignard reagents to nitriles under microwave heating conditions

Ruifang Wang; Brian T. Gregg; Wei Zhang; Kathryn C. Golden; John F. Quinn; Peng Cui; Dmytro O. Tymoshenko


Tetrahedron Letters | 2009

Rapid, one-pot synthesis of α,α-disubstituted primary amines by the addition of Grignard reagents to nitriles under microwave heating conditions

Brian T. Gregg; Kathryn C. Golden; John F. Quinn; Hong-Jun Wang; Wei Zhang; Ruifang Wang; Francis S. Wekesa; Dmytro O. Tymoshenko


Archive | 2013

Heterocyclic compounds as bromodomain inhibitors

Shuang Liu; Bryan Cordell Duffy; John F. Quinn; May Xiaowu Jiang; Ruifang Wang; Gregory Scott Martin; He Zhao; Bruce Francis Molino; Peter R. Young


Archive | 2015

Bicyclic bromodomain inhibitors

John F. Quinn; Bryan Cordell Duffy; Shuang Liu; Ruifang Wang; May Xiaowu Jiang; Gregory Scott Martin; Gregory S. Wagner; Peter R. Young


Archive | 2014

Neuartige substituierte bicyclische verbindungen als bromdomänenhemmer

Shuang Liu; John F. Quinn; Bryan Cordell Duffy; Ruifang Wang; May Xiaowu Jiang; Gregory Scott Martin; He Zhao; Michael Ellis; Gregory S. Wagner; Peter R. Young

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Shuang Liu

Albany Molecular Research

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Brian T. Gregg

Albany Molecular Research

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Michael Ellis

Australian National University

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Cheng Guo

Albany Molecular Research

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