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Latest Paper:

Bioorg Med Chem Lett. 2009 Jan 10;: 19181525 (P,S,G,E,B,D)
Department of Medicinal Chemistry, Technology Enabled Synthesis Group, Merck & Co., Inc., PO Box 4, West Point, PA 19486, USA.
Glycine transporter 1 (GlyT1) represents a novel target for the treatment of schizophrenia via the potentiation of glutamatergic NMDA receptors. The discovery of 4,4-disubstituted piperidine inhibitors of GlyT1 which exhibit improved pharmacokinetic properties, including oral bioavailability, is discussed.
Bioorg Med Chem Lett. 2009 Jan 9;: 19179073 (P,S,G,E,B,D)
Department of Medicinal Chemistry, Technology Enabled Synthesis Group, Merck & Co., Inc., WP-14-1, PO Box 4 Sumneytown Pike, West Point, PA 19486, USA.
Employing an iterative analogue library approach, novel potent and selective glycine transporter 1 (GlyT1) inhibitors containing a 4-pyridin-2-ylpiperidine sulfonamide have been discovered. These inhibitors are devoid of time-dependent CYP inhibition activity and exhibit improved aqueous solubility versus the corresponding 4-phenylpiperidine analogues.
Bioorg Med Chem Lett. 2008 Aug 5;: 18722115 (P,S,G,E,B,D)
Department of Medicinal Chemistry, Sumneytown Pike, PO Box 4, West Point, PA 19486, USA.
A series of carbo- and heterocyclic alpha-hydroxy amide-derived bradykinin B(1) antagonists was prepared and evaluated. A 4,4-difluorocyclohexyl alpha-hydroxy amide was incorporated along with a 2-methyl tetrazole in lieu of an oxadiazole to afford a suitable compound with good pharmacokinetic properties, CNS penetration, and clearance by multiple metabolic pathways.
J Med Chem. 2008 Jun 14;: 18553956 (P,S,G,E,B,D)
Departments of Medicinal Chemistry, Neuroscience Drug Discovery, and Drug Metabolism, Merck Research Laboratories, West Point, Pennsylvania 19486 daishi_su@merck.com.
Selective bradykinin (BK) B 1 receptor antagonists could be novel therapeutic agents for the treatment of pain and inflammation. Elucidation of the structure activity relationships of the structurally novel HTS lead compound 1 provided potent hBK B 1 receptor antagonists with excellent receptor occupancy in the CNS of hBK B 1 transgenic rats.
Bioorg Med Chem Lett. 2008 Jan 15;18 (2):682-7 18240388 (P,S,G,E,B)
Department of Medicinal Chemistry, Merck Research Laboratories, West Point, PA 19486, USA.
The design and synthesis of a novel class of human bradykinin B1 antagonists featuring difluoroethyl ether and isoxazole carboxamide moieties are disclosed. Compound 7g displayed excellent pharmacokinetic properties, efficient ex vivo receptor occupancy, and low potential for P450 induction via PXR activation.
Bioorg Med Chem Lett. 2008 Jan 8;: 18207395 (P,S,G,E,B,D) Cited:1
Department of Medicinal Chemistry, Merck Research Laboratories, West Point, PA 19486, USA.
A series of OX(2)R/OX(1)R dual orexin antagonists was prepared based on a proline bis-amide identified as a screening lead. Through a combination of classical and library synthesis, potency enhancing replacements for both amide portions were discovered. N-methylation of the benzimidazole moiety within the lead structure significantly reduced P-gp susceptibility while increasing potency, giving rise to good brain penetration. A compound from this series has demonstrated in vivo central activity when dosed peripherally in a pharmacodynamic model of orexin activity.
Bioorg Med Chem Lett. 2007 Nov 19;: 18061443 (P,S,G,E,B,D) Cited:1
Antagonism of the bradykinin B(1) receptor represents a potential treatment for chronic pain and inflammation. Novel antagonists incorporating alpha-hydroxy amides were designed that display low-nanomolar affinity for the human bradykinin B(1) receptor and good bioavailability in the rat and dog. In addition, these functionally active compounds show high passive permeability and low susceptibility to phosphoglycoprotein mediated efflux, predictive of good CNS exposure.
Bioorg Med Chem Lett. 2007 Apr 24;: 17482459 (P,S,G,E,B,D)
Department of Medicinal Chemistry, Sumneytown Pike, PO Box 4, West Point, PA 19486, USA.
SAR study of the biphenyl region of cyclopropanecarboxamide derived bradykinin B(1) antagonists was examined. Incorporation of a pyridine in place of the proximal phenyl ring and chlorination of the distal phenyl ring proved to be well tolerated and provided compounds with improved pharmacokinetic profiles, CNS penetration, and enhanced receptor occupancy.
Bioorg Med Chem Lett. 2007 Mar 21;: 17428657 (P,S,G,E,B,D)
Department of Medicinal Chemistry, West Point, PA 19486, USA.
Selective bradykinin (BK) B(1) receptor antagonists have been shown to be antinociceptive in animal models and could be novel therapeutic agents for the treatment of pain and inflammation. Elucidation of the structure-activity relationships of the biphenyl moiety of the lead compound 1 provided a potent new structural class of BK B(1) receptor antagonists.
J Med Chem. 2007 Jan 25;50 (2):272-82 17228869 (P,S,G,E,B,D) Cited:1
Departments of Medicinal Chemistry, Neuroscience Drug Discovery, Pain Research, and Drug Metabolism, Merck Research Laboratories, Sumneytown Pike, P.O. Box 4, West Point, Pennsylvania 19486.
A series of biphenylaminocyclopropane carboxamide based bradykinin B1 receptor antagonists has been developed that possesses good pharmacokinetic properties and is CNS penetrant. Discovery that the replacement of the trifluoropropionamide in the lead structure with polyhaloacetamides, particularly a trifluoroacetamide, significantly reduced P-glycoprotein mediated efflux for the series proved essential. One of these novel bradykinin B1 antagonists (13b) also exhibited suitable pharmacokinetic properties and efficient ex vivo receptor occupancy for further development as a novel approach for the treatment of pain and inflammation.
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