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Dive into the research topics where John Oldfield is active.

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Featured researches published by John Oldfield.


Bioorganic & Medicinal Chemistry Letters | 2012

Balancing hERG affinity and absorption in the discovery of AZD5672, an orally active CCR5 antagonist for the treatment of rheumatoid arthritis

John G. Cumming; Howard Tucker; John Oldfield; Colin Fielding; Adrian J. Highton; Alan Wellington Faull; Martin Wild; Dearg S. Brown; Stuart L. Wells; John S. Shaw

Modifications to a series of potent and selective substituted 1-(3,3-diphenylpropyl)-piperidine phenylacetamide CCR5 antagonists were explored with the aim of reducing affinity at the hERG cardiac ion channel. Replacement of one aromatic ring in the diphenylpropyl region with less lipophilic, saturated heterocyclic rings and subsequent optimisation of the other phenyl ring led to the identification of clinical compound AZD5672 which retained excellent potency while reducing hERG affinity. Modulating lipophilicity affected the interplay between potency, hERG affinity and absorption. AZD5672 was found to have an acceptable balance of these properties and was progressed to a phase II clinical trial to test the hypothesis that inhibition of CCR5 will bring benefits in the treatment of rheumatoid arthritis.


Archive | 1995

Ortho-substituted aromatic ether compounds and their use in pharmaceutical compositions for pain relief

Gloria Anne Breault; John Oldfield; Howard Tucker; Peter Warner


Archive | 1995

Pharmaceutically active substituted aromatic compounds

Gloria Ann Breault; John Oldfield; Howard Tucker; Peter Warner


Archive | 1995

Aromatic amino ethers as pain relieving agents

Gloria Anne Breault; Howard Tucker; John Oldfield; Peter Warner


Archive | 1996

Ortho-substituted aromatic compounds, containing three (het)aryl moieties, their preparation and their use as prostaglandin E2-(PGE2)-antagonists

Gloria Anne Breault; John Oldfield; Howard Tucker; Peter Warner


Bioorganic & Medicinal Chemistry Letters | 2005

Modulators of the human CCR5 receptor. Part 2: SAR of substituted 1-(3,3-diphenylpropyl)-piperidinyl phenylacetamides.

John G. Cumming; Anne Cooper; Ken Grime; Chris Logan; Sharon McLaughlin; John Oldfield; John S. Shaw; Howard Tucker; Jon Winter; David Whittaker


Archive | 2000

Acetamido acetonitrile derivatives as inhibitors of cathepsin l and/or cathepsin s

Howard Tucker; Michael Stewart Large; John Oldfield; Craig Johnstone; Philip Neil Edwards


Archive | 2002

Substituted aryl and heteroaryl compounds as E-type prostaglandin antagonists

Gloria Anne Breault; John Oldfield; Howard Tucker; Peter Warner


Bioorganic & Medicinal Chemistry Letters | 2006

Modulators of the human CCR5 receptor. Part 3: SAR of substituted 1-[3-(4-methanesulfonylphenyl)-3-phenylpropyl]-piperidinyl phenylacetamides.

John G. Cumming; Simon Brown; Anne Cooper; Alan Wellington Faull; Anthony Patrick Flynn; Ken Grime; John Oldfield; John S. Shaw; Emma Shepherd; Howard Tucker; David Whittaker


Archive | 1992

Tricyclic heterocycles as PGE2 antagonists

John Oldfield; Howard Tucker

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Howard Tucker

Imperial Chemical Industries

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Howard Tucker

Imperial Chemical Industries

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