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Design and Synthesis of a Series of Potent and Orally Bioavailable Noncovalent Thrombin Inhibitors That Utilize Nonbasic Groups in the P1 Position

Authors :
Tucker, T. J.
Brady, S. F.
Lumma, W. C.
Lewis, S. D.
Gardell, S. J.
Naylor-Olsen, A. M.
Yan, Y.
Sisko, J. T.
Stauffer, K. J.
Lucas, B. J.
Lynch, J. J.
Cook, J. J.
Stranieri, M. T.
Holahan, M. A.
Lyle, E. A.
Baskin, E. P.
Chen, I-W.
Dancheck, K. B.
Krueger, J. A.
Cooper, C. M.
Vacca, J. P.
Source :
Journal of Medicinal Chemistry; August 13, 1998, Vol. 41 Issue: 17 p3210-3219, 10p
Publication Year :
1998

Abstract

As part of an ongoing effort to prepare therapeutically useful orally active thrombin inhibitors, we have synthesized a series of compounds that utilize nonbasic groups in the P1 position. The work is based on our previously reported lead structure, compound <BO>1</BO>, which was discovered via a resin-based approach to varying P1. By minimizing the size and lipophilicity of the P3 group and by incorporating hydrogen-bonding groups on the N-terminus or on the 2-position of the P1 aromatic ring, we have prepared a number of derivatives in this series that exhibit subnanomolar enzyme potency combined with good in vivo antithrombotic and bioavailability profiles. The oxyacetic amide compound <BO>14b </BO>exhibited the best overall profile of in vitro and in vivo activity, and crystallographic studies indicate a unique mode of binding in the thrombin active site.

Details

Language :
English
ISSN :
00222623 and 15204804
Volume :
41
Issue :
17
Database :
Supplemental Index
Journal :
Journal of Medicinal Chemistry
Publication Type :
Periodical
Accession number :
ejs1110035