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Dive into the research topics where Dingwei Yu is active.

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Featured researches published by Dingwei Yu.


Expert Opinion on Therapeutic Patents | 2009

Trk kinase inhibitors as new treatments for cancer and pain

Tao Wang; Dingwei Yu; Michelle L Lamb

Background: Tropomyosin-related kinases (Trks) are a family of receptor tyrosine kinases activated by neurotrophins. Trks play important roles in pain sensation as well as tumour cell growth and survival signaling. Thus, inhibitors of Trk receptor kinases might provide targeted treatments for pain and cancer. Objective: This paper reviews those patent applications since 2002 claiming small-molecule inhibitors of Trk receptor kinases. Methods: Primary literature and patents were searched with SciFinder and Google Scholar. Patents were selected based on their relevance to Trks and were evaluated and representative compounds were listed as examples. Results/conclusion: Several series of Trk inhibitors with excellent in vitro potencies have been reported and a number of compounds have gone into the clinic. It should be noted that few of these inhibitors are Trk selective, demonstrating that targeting Trk kinases for treatment of pain and/or cancer offers a promising but also challenging approach.


Journal of Medicinal Chemistry | 2008

Identification of 4-aminopyrazolylpyrimidines as potent inhibitors of Trk kinases.

Tao Wang; Michelle L. Lamb; David Scott; Haixia Wang; Michael Howard Block; Paul Lyne; John W. Lee; Audrey Davies; Hai-Jun Zhang; Yanyi Zhu; Fei Gu; Yongxin Han; Bin Wang; Peter Mohr; Robert J. Kaus; John Anthony Josey; Ethan Hoffmann; Ken Thress; Terry MacIntyre; Haiyun Wang; Charles Omer; Dingwei Yu

The design, synthesis and biological evaluation of a series of 4-aminopyrazolylpyrimidines as potent Trk kinase inhibitors is reported. High-throughput screening identified a promising hit in the 4-aminopyrazolylpyrimidine chemotype. Initial optimization of the series led to more potent Trk inhibitors. Further optimization using two strategies resulted in significant improvement of physical properties and led to the discovery of 10z (AZ-23), a potent, orally bioavailable Trk A/B inhibitor. The compound offers the potential to test the hypothesis that modulation of Trk activity will be of benefit in the treatment of cancer and other indications in vivo.


Journal of Medicinal Chemistry | 2012

Discovery of Checkpoint Kinase Inhibitor (S)-5-(3-Fluorophenyl)-N-(piperidin-3-yl)-3-ureidothiophene-2-carboxamide (AZD7762) by Structure-Based Design and Optimization of Thiophenecarboxamide Ureas.

Oza; Susan Ashwell; Lynsie Almeida; Patrick Brassil; Jason Breed; Chun Deng; Thomas Gero; Michael Grondine; C Horn; Stephanos Ioannidis; D Liu; Paul Lyne; Nicholas John Newcombe; Martin Pass; Jon Read; S Ready; S Rowsell; Mei Su; Dorin Toader; Melissa Vasbinder; Dingwei Yu; Yan Yu; Y Xue; S Zabludoff; James W. Janetka

Checkpoint kinases CHK1 and CHK2 are activated in response to DNA damage that results in cell cycle arrest, allowing sufficient time for DNA repair. Agents that lead to abrogation of such checkpoints have potential to increase the efficacy of such compounds as chemo- and radiotherapies. Thiophenecarboxamide ureas (TCUs) were identified as inhibitors of CHK1 by high throughput screening. A structure-based approach is described using crystal structures of JNK1 and CHK1 in complex with 1 and 2 and of the CHK1-3b complex. The ribose binding pocket of CHK1 was targeted to generate inhibitors with excellent cellular potency and selectivity over CDK1and IKKβ, key features lacking from the initial compounds. Optimization of 3b resulted in the identification of a regioisomeric 3-TCU lead 12a. Optimization of 12a led to the discovery of the clinical candidate 4 (AZD7762), which strongly potentiates the efficacy of a variety of DNA-damaging agents in preclinical models.


Bioorganic & Medicinal Chemistry Letters | 2008

Discovery of a novel class of 2-ureido thiophene carboxamide checkpoint kinase inhibitors.

James W. Janetka; Lynsie Almeida; Susan Ashwell; Patrick Brassil; Kevin Daly; Chun Deng; Thomas Gero; Roberta Glynn; Candice Horn; Stephanos Ioannidis; Paul Lyne; Nicholas John Newcombe; Vibha Oza; Martin Pass; Stephanie Springer; Mei Su; Dorin Toader; Melissa Vasbinder; Dingwei Yu; Yan Yu; Sonya Zabludoff

Checkpoint kinase-1 (Chk1, CHEK1) is a Ser/Thr protein kinase that mediates the cellular response to DNA-damage. A novel class of 2-ureido thiophene carboxamide urea (TCU) Chk1 inhibitors is described. Inhibitors in this chemotype were optimized for cellular potency and selectivity over Cdk1.


Bioorganic & Medicinal Chemistry Letters | 2012

Synthesis and Evaluation of Triazolones as Checkpoint Kinase 1 Inhibitors.

Vibha Oza; Susan Ashwell; Patrick Brassil; Jason Breed; Jaychandran Ezhuthachan; Chun Deng; Michael Grondine; Candice Horn; Dongfang Liu; Paul Lyne; Nicholas John Newcombe; Martin Pass; Jon Read; Mei Su; Dorin Toader; Dingwei Yu; Yan Yu; Sonya Zabludoff

Checkpoint kinase 1 (Chk1, CHEK1) is a Ser/Thr protein kinase that plays a key role in mediating the cellular response to DNA-damage. Synthesis and evaluation of a previously described class of Chk1 inhibitors, triazoloquinolones/triazolones (TZs) is further described herein. Our investigation of structure-activity relationships led to the identification of potent inhibitors 14c, 14h and 16e. Key challenges included modulation of physicochemical properties and pharmacokinetic (PK) parameters to enable compound testing in a Chk1 specific hollow fiber pharmacodynamic model. In this model, 16e was shown to abrogate topotecan-induced cell cycle arrest in a dose dependent manner. The demonstrated activity of TZs in this model in combination with a chemotherapeutic agent as well as radiotherapy validates this series of Chk1 inhibitors. X-ray crystal structures (PDB code: 2YEX and 2YER) for an initial lead and an optimized analog are also presented.


ACS Medicinal Chemistry Letters | 2012

Discovery of Disubstituted Imidazo[4,5-B]Pyridines and Purines as Potent Trka Inhibitors

Tao Wang; Michelle L. Lamb; Michael Howard Block; Audrey Davies; Yongxin Han; Ethan Hoffmann; Stephanos Ioannidis; John Anthony Josey; Zhong-Ying Liu; Paul Lyne; Terry MacIntyre; Peter Mohr; Charles Omer; Tove Sjögren; Kenneth S. Thress; Bin Wang; Haiyun Wang; Dingwei Yu; Hai-Jun Zhang

Trk receptor tyrosine kinases have been implicated in cancer and pain. A crystal structure of TrkA with AZ-23 (1a) was obtained, and scaffold hopping resulted in two 5/6-bicyclic series comprising either imidazo[4,5-b]pyridines or purines. Further optimization of these two fusion series led to compounds with subnanomolar potencies against TrkA kinase in cellular assays. Antitumor effects in a TrkA-driven mouse allograft model were demonstrated with compounds 2d and 3a.


Bioorganic & Medicinal Chemistry Letters | 2010

Discovery of a novel class of triazolones as checkpoint kinase inhibitors--hit to lead exploration.

Vibha Oza; Susan Ashwell; Patrick Brassil; Jason Breed; Chun Deng; Jay Ezhuthachan; Heather Haye; Candice Horn; James W. Janetka; Paul Lyne; Nicholas John Newcombe; Ludo Otterbien; Martin Pass; Jon Read; Sian Roswell; Mei Su; Dorin Toader; Dingwei Yu; Yan Yu; Anna Valentine; Peter Webborn; Ann White; Sonya Zabludoff; Xiaolan Zheng

Checkpoint Kinase-1 (Chk1, CHK1, CHEK1) is a Ser/Thr protein kinase that mediates cellular responses to DNA-damage. A novel class of Chk1 inhibitors, triazoloquinolones/triazolones (TZs) was identified by high throughput screening. The optimization of these hits to provide a lead series is described.


Archive | 2006

Pyrazolylaminopyridine derivatives useful as kinase inhibitors

Audrey Davies; Michelle Lamb; Paul Lyne; Peter Mohr; Bin Wang; Tao Wang; Dingwei Yu


Archive | 2004

THIOPHENE DERIVATIVES AS CHK 1 INIHIBITORS

Susan Ashwell; Thomas Gero; Stephanos Ioannidis; James Janetka; Paul Lyne; Mei Su; Dorin Toader; Dingwei Yu; Yan Yu


Archive | 2004

Novel fused triazolones and the uses thereof

Susan Ashwell; Jayachandran Ezhuthachan; Paul Lyne; Nicholas John Newcombe; Martin Pass; Vibha Oza; Mei Su; Dorin Toader; Dingwei Yu; Yan Yu

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