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Featured researches published by Scott A. Long.


Journal of Medicinal Chemistry | 2010

Discovery of (3S,3aR)-2-(3-Chloro-4-cyanophenyl)-3-cyclopentyl-3,3a,4,5-tetrahydro-2H-benzo[g]indazole-7-carboxylic Acid (PF-3882845), an Orally Efficacious Mineralocorticoid Receptor (MR) Antagonist for Hypertension and Nephropathy

Marvin J. Meyers; Graciela B. Arhancet; Susan L. Hockerman; Xiangyang Chen; Scott A. Long; Matthew W. Mahoney; Joseph R. Rico; Danny J. Garland; James Robert Blinn; Joe T. Collins; Shengtian Yang; Horng-Chih Huang; Kevin McGee; Jay M. Wendling; Jessica D. Dietz; Maria A. Payne; Bruce L. Homer; Marcia I. Heron; David B. Reitz; Xiao Hu

We have discovered a novel class of nonsteroidal pyrazoline antagonists of the mineralocorticoid receptor (MR) that show excellent potency and selectivity against other nuclear receptors. Early analogues were poorly soluble and had a propensity to inhibit the hERG channel. Remarkably, both of these challenges were overcome by incorporation of a single carboxylate moiety. Structural modification of carboxylate-containing lead R-4g with a wide range of substituents at each position of the pyrazoline ring resulted in R-12o, which shows excellent activity against MR and reasonable pharmacokinetic profile. Introduction of conformational restriction led to a novel series characterized by exquisite potency and favorable steroid receptor selectivity and pharmacokinetic profile. Oral dosing of 3S,3aR-27d (PF-3882845) in the Dahl salt sensitive preclinical model of salt-induced hypertension and nephropathy showed blood pressure attenuation significantly greater than that with eplerenone, reduction in urinary albumin, and renal protection. As a result of these findings, 3S,3aR-27d was advanced to clinical studies.


Bioorganic & Medicinal Chemistry Letters | 2009

Benzothiophene inhibitors of MK2. Part 1: structure-activity relationships, assessments of selectivity and cellular potency

David R. Anderson; Marvin Jay Meyers; Ravi G. Kurumbail; Nicole Caspers; Gennadiy I. Poda; Scott A. Long; Betsy S. Pierce; Matthew W. Mahoney; Robert J. Mourey

Identification of potent benzothiophene inhibitors of mitogen activated protein kinase-activated protein kinase 2 (MK2), structure-activity relationship (SAR) studies, selectivity assessments against CDK2, cellular potency and mechanism of action are presented. Crystallographic data provide a rationale for the observed MK2 potency as well as selectivity over CDK2 for this class of inhibitors.


Bioorganic & Medicinal Chemistry Letters | 2009

Benzothiophene inhibitors of MK2. Part 2: improvements in kinase selectivity and cell potency.

David R. Anderson; Marvin Jay Meyers; Ravi G. Kurumbail; Nicole Caspers; Gennadiy I. Poda; Scott A. Long; Betsy S. Pierce; Matthew W. Mahoney; Robert J. Mourey; Mihir D. Parikh

Optimization of kinase selectivity for a set of benzothiophene MK2 inhibitors provided analogs with potencies of less than 500 nM in a cell based assay. The selectivity of the inhibitors can be rationalized by examination of X-ray crystal structures of inhibitors bound to MK2.


Bioorganic & Medicinal Chemistry Letters | 2011

Discovery of novel spirocyclic inhibitors of fatty acid amide hydrolase (FAAH). Part 2. Discovery of 7-azaspiro[3.5]nonane urea PF-04862853, an orally efficacious inhibitor of fatty acid amide hydrolase (FAAH) for pain.

Marvin Jay Meyers; Scott A. Long; Matthew James Pelc; Jane L. Wang; Scott J. Bowen; Barbara Ann Schweitzer; Mark V. Wilcox; Joseph J. Mcdonald; Sarah E. Smith; Susan Foltin; Jeanne M. Rumsey; Young-Sun Yang; Mark C. Walker; Satwik Kamtekar; David Beidler; Atli Thorarensen

Fatty acid amide hydrolase (FAAH) is an integral membrane serine hydrolase responsible for the degradation of fatty acid amide signaling molecules such as endocannabinoid anandamide (AEA), which has been shown to possess cannabinoid-like analgesic properties. Herein we report the optimization of spirocyclic 7-azaspiro[3.5]nonane and 1-oxa-8-azaspiro[4.5]decane urea covalent inhibitors of FAAH. Using an iterative design and optimization strategy, lead compounds were identified with a remarkable reduction in molecular weight and favorable CNS drug like properties. 3,4-Dimethylisoxazole and 1-methyltetrazole were identified as superior urea moieties for this inhibitor class. A dual purpose in vivo efficacy and pharmacokinetic screen was designed to be the key decision enabling experiment affording the ability to move quickly from compound synthesis to selection of preclinical candidates. On the basis of the remarkable potency, selectivity, pharmacokinetic properties and in vivo efficacy, PF-04862853 (15p) was advanced as a clinical candidate.


Bioorganic & Medicinal Chemistry Letters | 2010

Structure-based drug design enables conversion of a DFG-in binding CSF-1R kinase inhibitor to a DFG-out binding mode.

Marvin Jay Meyers; Matthew James Pelc; Satwik Kamtekar; Jacqueline E. Day; Gennadiy I. Poda; Molly K. Hall; Marshall L. Michener; Beverly A. Reitz; Karl J. Mathis; Betsy S. Pierce; Mihir D. Parikh; Deborah A. Mischke; Scott A. Long; John J. Parlow; David R. Anderson; Atli Thorarensen

The work described herein demonstrates the utility of structure-based drug design (SBDD) in shifting the binding mode of an HTS hit from a DFG-in to a DFG-out binding mode resulting in a class of novel potent CSF-1R kinase inhibitors suitable for lead development.


Bioorganic & Medicinal Chemistry Letters | 2011

Discovery of novel spirocyclic inhibitors of fatty acid amide hydrolase (FAAH). Part 1: Identification of 7-azaspiro[3.5]nonane and 1-oxa-8-azaspiro[4.5]decane as lead scaffolds

Marvin Jay Meyers; Scott A. Long; Matthew James Pelc; Jane L. Wang; Scott J. Bowen; Mark C. Walker; Barbara Ann Schweitzer; Heather M. Madsen; Ruth E. Tenbrink; Joseph J. Mcdonald; Sarah E. Smith; Susan Foltin; David Beidler; Atli Thorarensen

Herein we report the identification of two new fatty acid amide hydrolase (FAAH) inhibitor lead series with FAAH k(inact)/K(i) potency values greater than 1500M(-1)s(-1). The two novel spirocyclic cores, 7-azaspiro[3.5]nonane and 1-oxa-8-azaspiro[4.5]decane, clearly distinguished themselves from the other spirocyclic cores on the basis of their superior potency for FAAH. Lead compounds from these two series have suitable FAAH potency and selectivity for additional medicinal chemistry optimization.


Bioorganic & Medicinal Chemistry Letters | 2007

Design, synthesis, and biological evaluation of pyrazinones containing novel P1 needles as inhibitors of TF/VIIa.

John I. Trujillo; Horng-Chih Huang; William L. Neumann; Matthew W. Mahoney; Scott A. Long; Wei Huang; Danny J. Garland; Carrie Kusturin; Zaheer Abbas; Michael S. South; David B. Reitz


Archive | 2012

Pyrimidine and pyridine derivatives useful in therapy

Scott A. Long; Atli Thorarensen; Mark E. Schnute


Archive | 2007

Pyrazoline compounds as mineralocorticoid receptor antagonists

Marvin Jay Meyers; Graciela B. Arhancet; Xiangyang Chen; Susan L. Hockerman; Scott A. Long; Matthew W. Mahoney; David B. Reitz; Joseph G. Rico


Archive | 2009

7-azaspiro [3.5] nonane-7-carboxamide compounds as modulators of fatty acid amide hydrolase

Scott A. Long; Marvin Jay Meyers; Matthew James Pelc; Barbara Ann Schweitzer; Atli Thorarensen; Lijuan Jane Wang

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