Deborah Ann Evrard
Eli Lilly and Company
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Publication
Featured researches published by Deborah Ann Evrard.
Journal of Medicinal Chemistry | 2008
Nicole T. Hatzenbuhler; Reinhardt Bernhard Baudy; Deborah Ann Evrard; Amedeo Arturo Failli; Boyd L. Harrison; Steven Edward Lenicek; Richard Eric Mewshaw; Annmarie Saab; Uresh Shantilal Shah; Jean Sze; Minsheng Zhang; Dahui Zhou; Michael Chlenov; Michael Z. Kagan; Jeannette Golembieski; Geoffrey Hornby; Margaret Lai; Deborah L. Smith; Kelly Sullivan; Lee E. Schechter; Terrance H. Andree
Novel compounds combining a 5-HT 1A moiety (3-aminochroman scaffold) and a 5-HT transporter (indole analogues) linked through a common basic nitrogen via an alkyl chain attached at the 1- or 3-position of the indole were evaluated for dual affinity at both the 5-HT reuptake site and the 5-HT 1A receptor. Compounds of most interest were found to have a 5-carbamoyl-8-fluoro-3-amino-3,4-dihydro-2 H-1-benzopyran linked to a 3-alkylindole (straight chain), more specifically substituted with a 5-fluoro (( R)-(-)- 35c), 5-cyano ((-)- 52a), or 5,7-difluoro ((-)- 52g). Several factors contributed to 5-HT 1A affinity, serotonin rat transporter affinity, and functional antagonism in vitro. Although most of our analogues showed good to excellent affinities at both targets, specific features such as cyclobutyl substitution on the basic nitrogen and stereochemistry at the 3-position of the chroman moiety seemed necessary for antagonism at the 5-HT 1A receptor. Branched linkers seemed to impart antagonism even as racemates; however, the potency of these analogues in the functional assay was not desirable enough to further pursue these compounds.
Journal of Medicinal Chemistry | 2009
Dahui Zhou; Gary Paul Stack; Jennifer R. Lo; Amedeo Arturo Failli; Deborah Ann Evrard; Boyd L. Harrison; Nicole T. Hatzenbuhler; Megan Tran; Susan Christman Croce; Soo Yi; Jeannette Golembieski; Geoffrey Hornby; Margaret Lai; Qian Lin; Lee E. Schechter; Deborah L. Smith; Adam D. Shilling; Christine Huselton; Paul J. Mitchell; Chad E. Beyer; Terrance H. Andree
On the basis of the previously reported clinical candidate, SSA-426 (1), a series of related 2-piperazin-1-ylquinoline derivatives 3-16 were synthesized and evaluated as dual-acting serotonin (5-HT) reuptake inhibitors and 5-HT1A receptor antagonists. In particular, compound 7 exhibits potent functional activities at both the 5-HT transporter and 5-HT1A receptor, good selectivity over the alpha1-adrenergic and dopaminergic receptors, acceptable pharmacokinetic properties, and a favorable in vivo profile.
Journal of Medicinal Chemistry | 1996
James E. Audia; Deborah Ann Evrard; Gwyn R. Murdoch; James J. Droste; Jeffrey S. Nissen; Kathy W. Schenck; Pawel Fludzinski; Virginia L. Lucaites; David L. Nelson; Marlene L. Cohen
Journal of Medicinal Chemistry | 1987
Pawel Fludzinski; Deborah Ann Evrard; William E. Bloomquist; William B. Lacefield; William Pfeifer; Noel D. Jones; Jack B. Deeter; Marlene L. Cohen
Archive | 1995
James E. Audia; James J. Droste; Deborah Ann Evrard; Pawel Fludzinski; Gwyn L. Murdoch; David L. Nelson
Archive | 2000
Richard Eric Mewshaw; Ping Zhou; Dahui Zhou; Kristin Lynne Meagher; Magda Asselin; Deborah Ann Evrard; Adam M. Gilbert
Archive | 2004
Nicole T. Hatzenbuhler; Deborah Ann Evrard; Richard Eric Mewshaw; Dahui Zhou; Uresh Shantilal Shah; Jennifer Ann Inghrim; Steven Edward Lenicek; Reinhardt Bernhard Baudy; John A. Butera; Annmarie Louise Sabb; Amedeo Arturo Failli; Pudukkaraipudur Sivaramakrishnan Ramamoorthy
Journal of Medicinal Chemistry | 2006
Nicole T. Hatzenbuhler; Deborah Ann Evrard; Boyd L. Harrison; Donna M. Huryn; Jennifer Ann Inghrim; Christina Kraml; James F. Mattes; Richard Eric Mewshaw; Dahui Zhou; Geoffrey Hornby; Qian Lin; Deborah L. Smith; Kelly Sullivan; Lee E. Schechter; Chad E. Beyer; Terrance H. Andree
Archive | 1997
Thomas Alan Crowell; Deborah Ann Evrard; Charles David Jones; Brian Stephen Muehl; Christopher John Rito; Anthony J. Shuker; Andrew John Thorpe; Kenneth Jeff Thrasher
Archive | 1994
James E. Audia; James J. Droste; Deborah Ann Evrard