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Dive into the research topics where Greg J. Reinhart is active.

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Featured researches published by Greg J. Reinhart.


Journal of Medicinal Chemistry | 2008

Discovery of sodium R-(+)-4-{2-[5-(2-fluoro-3-methoxyphenyl)-3-(2-fluoro-6-[trifluoromethyl]benzyl)-4-methyl-2,6-dioxo-3,6-dihydro-2H-pyrimidin-1-yl]-1-phenylethylamino}butyrate (elagolix), a potent and orally available nonpeptide antagonist of the human gonadotropin-releasing hormone receptor.

Chen Chen; Dongpei Wu; Zhiqiang Guo; Qiu Xie; Greg J. Reinhart; Ajay Madan; Jenny Wen; Takung Chen; Charles Q. Huang; Mi Chen; Yongsheng Chen; Fabio C. Tucci; Martin W. Rowbottom; Joseph Pontillo; Yun-Fei Zhu; Warren Wade; John Saunders; Haig Bozigian; R. Scott Struthers

The discovery of novel uracil phenylethylamines bearing a butyric acid as potent human gonadotropin-releasing hormone receptor (hGnRH-R) antagonists is described. A major focus of this optimization was to improve the CYP3A4 inhibition liability of these uracils while maintaining their GnRH-R potency. R-4-{2-[5-(2-fluoro-3-methoxyphenyl)-3-(2-fluoro-6-[trifluoromethyl]benzyl)-4-methyl-2,6-dioxo-3,6-dihydro-2H-pyrimidin-1-yl]-1-phenylethylamino}butyric acid sodium salt, 10b (elagolix), was identified as a potent and selective hGnRH-R antagonist. Oral administration of 10b suppressed luteinizing hormone in castrated macaques. These efforts led to the identification of 10b as a clinical compound for the treatment of endometriosis.


Bioorganic & Medicinal Chemistry Letters | 2002

Initial Structure–Activity Relationship Studies of a Novel Series of Pyrrolo[1,2-a]pyrimid-7-ones as GnRH Receptor Antagonists

Yun-Fei Zhu; R. Scott Struthers; Patrick J. Connors; Yinghong Gao; Timothy D. Gross; John Saunders; Keith M. Wilcoxen; Greg J. Reinhart; Nicholas Ling; Chen Chen

Initial SAR studies on 1-aminomethyl-2-aryl-3-cyano-pyrrolo[1,2-a]pyrimid-7-one-6-carboxylates as human GnRH receptor antagonists were discussed. 2-(2-Methylaminoethyl)pyridine was discovered to be a key feature for generating active compounds. The best compound from the series had 25 nM (K(i)) binding affinity to human GnRH receptor.


Bioorganic & Medicinal Chemistry Letters | 2002

A novel synthesis of 7-aryl-8-fluoro-pyrrolo[1,2-a]pyrimid-4-ones as potent, stable GnRH receptor antagonists

Fabio C. Tucci; Yun-Fei Zhu; Zhiqiang Guo; Timothy D. Gross; Patrick J. Connors; R. Scott Struthers; Greg J. Reinhart; Xiao-Chuan Wang; John Saunders; Chen Chen

A new class of small molecule GnRH antagonists, the 7-aryl-8-fluoro-pyrrolo[1,2-a]pyrimid-4-ones, was designed and a novel synthesis for these compounds was developed. The synthesis utilizes a base-catalyzed intramolecular cyclization of fluoromethyl pyrimidone 5 to generate the bicyclic core. Amongst the compounds synthesized, we discovered some highly potent GnRH receptor antagonists (e.g., 12, K(i)=9 nM), which showed enhanced stability towards acidic physiological conditions compared to the des-fluoro analogues.


Bioorganic & Medicinal Chemistry Letters | 2003

Synthesis and Structure–activity relationships of 1-arylmethyl-3-(1-methyl-2-amino)ethyl-5-aryl-6-methyluracils as antagonists of the human GnRH Receptor

Fabio C. Tucci; Yun-Fei Zhu; Zhiqiang Guo; Timothy D. Gross; Patrick J. Connors; R. Scott Struthers; Greg J. Reinhart; John Saunders; Chen Chen

A new class of small molecule GnRH antagonists, the 1-arylmethyl-3-(1-methyl-2-amino)ethyl-5-aryl-6-methyluracils, was designed and a novel stereoselective synthesis for these compounds was developed. The stereochemical integrities of key intermediates (S)-6 and (R)-6 were confirmed by a combination of X-ray crystallography and chiral HPLC determinations. SAR studies were performed, which allowed the identification of derivatives (R)-9f, (R)-9h and (R)-12 as potent hGnRH antagonists (K(i)=20 nM).


Bioorganic & Medicinal Chemistry Letters | 2002

Synthesis and initial structure–Activity relationships of a novel series of imidazolo[1,2-a]pyrimid-5-ones as potent GnRH receptor antagonists

Keith M. Wilcoxen; Yun-Fei Zhu; Patrick J. Connors; John Saunders; Timothy D. Gross; Yinghong Gao; Greg J. Reinhart; R. Scott Struthers; Chen Chen

SAR studies of 2-arylimidazolo[1,2-a]pyrimid-5-ones 10a-m, which were derived from initial lead 3a, resulted in the discovery of a series of potent nonpeptide human GnRH receptor antagonists. Compounds with good potency (e.g., 10e, K(i)=7.5 nM) were prepared by introduction of a 2-(2-pyridyl)ethyl at the basic nitrogen and a 3-pentyl ester at the 6-position of the bicyclic core.


Bioorganic & Medicinal Chemistry Letters | 2002

A Novel Synthesis of 2-Arylpyrrolo[1,2-a]pyrimid-7-ones and Their Structure–Activity Relationships as Potent GnRH Receptor Antagonists

Yun-Fei Zhu; Keith M. Wilcoxen; John Saunders; Zhiqiang Guo; Yinghong Gao; Patrick J. Connors; Timothy D. Gross; Fabio C. Tucci; R. Scott Struthers; Greg J. Reinhart; Qiu Xie; Chen Chen

In the process of developing GnRH receptor antagonists, a novel base-catalyzed cyclization of compounds 5a-b was discovered, which led to the formation of the 2-aryl pyrrolo[1,2-a]pyrimid-7-one core structures 6a-b. These intermediates were further modified at positions 1, 2, 4 and 6 to afford a series of potent GnRH antagonists with low nanomolar K(i) values.


Bioorganic & Medicinal Chemistry Letters | 2002

Design, synthesis and structure-activity relationships of novel imidazolo[1,2-a]pyrimid-5-ones as potent GnRH receptor antagonists.

Timothy D. Gross; Yun-Fei Zhu; John Saunders; Keith M. Wilcoxen; Yinghong Gao; Patrick J. Connors; Zhiqiang Guo; R. Scott Struthers; Greg J. Reinhart; Chen Chen

SAR studies of lead GnRH receptor antagonists 2a and 2b reported earlier resulted in the discovery of compound 10b which showed much higher potency (K(i)=4.6 nM, compared with 2b, K(i)=230 nM) in which the 7-position of the imidazolo[1,2-a]pyrimidone core was substituted with a methyl group, and the ester at the 6-position was replaced by the 3-methoxyphenyl group.


Bioorganic & Medicinal Chemistry Letters | 2003

Synthesis and Structure–Activity relationships of 1-arylmethyl-3-(2-aminopropyl)-5-aryl-6-methyluracils as potent GnRH receptor antagonists

Zhiqiang Guo; Yun-Fei Zhu; Fabio C. Tucci; Yinghong Gao; R. Scott Struthers; John Saunders; Timothy D. Gross; Qiu Xie; Greg J. Reinhart; Chen Chen

The novel synthesis and SAR studies of 6-methyluracils as human GnRH receptor antagonists are discussed. Introduction of a small methyl substituent at the beta-position from N3 of the uracil improved the GnRH binding potency by 5- to 10-fold. The best compound from the series had binding affinity of 5 nM (K(i)) to the human GnRH receptor.


Journal of Biological Chemistry | 2004

Differential desensitization, receptor phosphorylation, beta-arrestin recruitment, and ERK1/2 activation by the two endogenous ligands for the CC chemokine receptor 7.

Trudy A. Kohout; Shelby Nicholas; Stephen J. Perry; Greg J. Reinhart; Sachiko Junger; R. Scott Struthers


Journal of Medicinal Chemistry | 2005

3-[(2R)-Amino-2-phenylethyl]-1-(2,6-difluorobenzyl)-5-(2-fluoro-3-methoxyphenyl)- 6-methylpyrimidin-2,4-dione (NBI 42902) as a Potent and Orally Active Antagonist of the Human Gonadotropin-Releasing Hormone Receptor. Design, Synthesis, and in Vitro and in Vivo Characterization

Fabio C. Tucci; Yun-Fei Zhu; R. Scott Struthers; Zhiqiang Guo; Timothy D. Gross; Martin W. Rowbottom; Oscar L. Acevedo; Yinghong Gao; John Saunders; Qiu Xie; Greg J. Reinhart; Xin-Jun Liu; Nicholas Ling; Anne K. L. Bonneville; Takung Chen; and Haig Bozigian; Chen Chen

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Yun-Fei Zhu

Neurocrine Biosciences

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Chen Chen

Neurocrine Biosciences

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Qiu Xie

Neurocrine Biosciences

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