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Dive into the research topics where Charles J. Mcintyre is active.

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Featured researches published by Charles J. Mcintyre.


Journal of Medicinal Chemistry | 2010

Discovery of Vaniprevir (MK-7009), a Macrocyclic Hepatitis C Virus NS3/4a Protease Inhibitor

John A. McCauley; Charles J. Mcintyre; Michael T. Rudd; Kevin Nguyen; Joseph J. Romano; John W. Butcher; Kevin F. Gilbert; Kimberly J. Bush; M. Katharine Holloway; John Swestock; Bang-Lin Wan; Steven S. Carroll; Jillian DiMuzio; Donald J. Graham; Steven W. Ludmerer; Shi-Shan Mao; Mark Stahlhut; Christine Fandozzi; Nicole Trainor; David B. Olsen; Joseph P. Vacca; Nigel J. Liverton

A new class of HCV NS3/4a protease inhibitors which contain a P2 to P4 macrocyclic constraint was designed using a molecular-modeling derived strategy. Exploration of the P2 heterocyclic region, the P2 to P4 linker, and the P1 side chain of this class of compounds via a modular synthetic strategy allowed for the optimization of enzyme potency, cellular activity, and rat liver exposure following oral dosing. These studies led to the identification of clinical candidate 35b (vaniprevir, MK-7009), which is active against both the genotype 1 and genotype 2 NS3/4a protease enzymes and has good plasma exposure and excellent liver exposure in multiple species.


Antimicrobial Agents and Chemotherapy | 2010

MK-7009, a Potent and Selective Inhibitor of Hepatitis C Virus NS3/4A Protease

Nigel J. Liverton; Steven S. Carroll; Jillian DiMuzio; Christine Fandozzi; Donald J. Graham; Daria J. Hazuda; M. Katherine Holloway; Steven W. Ludmerer; John A. McCauley; Charles J. Mcintyre; David B. Olsen; Michael T. Rudd; Mark Stahlhut; Joseph P. Vacca

ABSTRACT The administration of hepatitis C virus (HCV) NS3/4A protease inhibitors to patients with chronic HCV infections has demonstrated that they have dramatic antiviral effects and that compounds acting via this mechanism are likely to form a key component of future anti-HCV therapy. We report here on the preclinical profile of MK-7009, an inhibitor of genotype 1a and 1b proteases at subnanomolar concentrations with modestly shifted potency against genotype 2a and 2b proteases at low nanomolar concentrations. Potent activity was also observed in a cell-based HCV replicon assay in the presence of added human serum (50%). In multiple species evaluated in preclinical studies, the MK-7009 concentrations in the liver were maintained at a significant multiple of the cell-based replicon 50% effective concentration over 12 to 24 h following the administration of moderate oral doses (5 to 10 mg per kg of body weight). MK-7009 also had excellent selectivity against both a range of human proteases and a broad panel of pharmacologically relevant ion channels, receptors, and enzymes. On the basis of this favorable profile, MK-7009 was selected for clinical development and is currently being evaluated in controlled clinical trials with both healthy volunteers and HCV-infected patients.


ACS Medicinal Chemistry Letters | 2012

Discovery of MK-5172, a Macrocyclic Hepatitis C Virus NS3/4a Protease Inhibitor.

Steven Harper; John A. McCauley; Michael T. Rudd; Marco Ferrara; Marcello DiFilippo; Benedetta Crescenzi; Uwe Koch; Alessia Petrocchi; M. Katharine Holloway; John W. Butcher; Joseph J. Romano; Kimberly J. Bush; Kevin F. Gilbert; Charles J. Mcintyre; Kevin Nguyen; Emanuela Nizi; Steven S. Carroll; Steven W. Ludmerer; Christine Burlein; Jillian DiMuzio; Donald J. Graham; Carolyn McHale; Mark Stahlhut; David B. Olsen; Edith Monteagudo; Simona Cianetti; Claudio Giuliano; Vincenzo Pucci; Nicole Trainor; Christine Fandozzi

A new class of HCV NS3/4a protease inhibitors containing a P2 to P4 macrocyclic constraint was designed using a molecular modeling-derived strategy. Building on the profile of previous clinical compounds and exploring the P2 and linker regions of the series allowed for optimization of broad genotype and mutant enzyme potency, cellular activity, and rat liver exposure following oral dosing. These studies led to the identification of clinical candidate 15 (MK-5172), which is active against genotype 1-3 NS3/4a and clinically relevant mutant enzymes and has good plasma exposure and excellent liver exposure in multiple species.


Journal of the American Chemical Society | 2008

Molecular Modeling Based Approach to Potent P2−P4 Macrocyclic Inhibitors of Hepatitis C NS3/4A Protease

Nigel J. Liverton; M. Katharine Holloway; John A. McCauley; Michael T. Rudd; John W. Butcher; Steven S. Carroll; Jillian DiMuzio; Christine Fandozzi; Kevin F. Gilbert; Shi-Shan Mao; Charles J. Mcintyre; Kevin Nguyen; Joseph J. Romano; Mark Stahlhut; Bang-Lin Wan; and David B. Olsen; Joseph P. Vacca

Molecular modeling of inhibitor bound full length HCV NS3/4A protease structures proved to be a valuable tool in the design of a new series of potent NS3 protease inhibitors. Optimization of initial compounds provided 25a. The in vitro activity and selectivity as well as the rat pharmacokinetic profile of 25a compare favorably with the data for other NS3/4A protease inhibitors currently in clinical development for the treatment of HCV.


Journal of Pharmacology and Experimental Therapeutics | 2007

Atrial Antifibrillatory Effects of Structurally Distinct IKur Blockers 3-[(Dimethylamino)methyl]-6-methoxy-2-methyl-4-phenylisoquinolin-1(2H)-one and 2-Phenyl-1,1-dipyridin-3-yl-2-pyrrolidin-1-yl-ethanol in Dogs with Underlying Heart Failure

Christopher P. Regan; Laszlo Erno Kiss; Gary L. Stump; Charles J. Mcintyre; Douglas C. Beshore; Nigel J. Liverton; Christopher J. Dinsmore; Joseph J. Lynch

Drug discovery efforts have focused recently on atrial-selective targets, including the Kv1.5 channel, which underlies the ultrarapid delayed rectifier current, IKur, to develop novel treatments for atrial fibrillation (AF). Two structurally distinct compounds, a triarylethanolamine TAEA and an isoquinolinone 3-[(dimethylamino)-methyl]-6-methoxy-2-methyl-4-phenylisoquinolin-1(2H)-one (ISQ-1), blocked IKur in Chinese hamster ovary cells expressing human Kv1.5 with IC50 values of 238 and 324 nM, respectively. In anesthetized dogs, i.v. infusions of TAEA and ISQ-1 elicited comparable 16% increases in atrial refractory period, with no effect on ventricular refractory period or QTc interval. Plasma concentrations at end infusion for TAEA and ISQ-1 were 58.5 ± 23.6 and 330.3 ± 43.5 nM, respectively. The abilities of TAEA and ISQ-1 to terminate AF, with comparison to the rapidly activating component of delayed rectifier potassium current blocker (+)-N-[1′-(6-cyano-1,2,3,4-tetrahydro-2(R)-naphthalenyl)-3,4-dihydro-4(R)-hydroxyspiro(2H-1-benzopyran-2,4′-piperidin)-6-yl]methanesulfonamide] monohydrochloride (MK-499) and the class IC 1-[2-[2-hydroxy-3-(propylamino)-propoxy]phenyl]-3-phenyl-1-propanone (propafenone), were assessed in conscious dogs with heart failure and inducible AF (entry criterion). All test agents administered in i.v. bolus regimens terminated AF in at least half of animals tested; conversely no agent was universally effective. MK-499, ISQ-1, TAEA, and propafenone terminated AF in five of six, four of seven, four of six, and five of six animals at plasma concentrations of 32.6 ± 18.7, 817 ± 274, 714 ± 622, and 816 ± 240 nM, respectively. Directed cardiac electrophysiologic studies in anesthetized dogs using i.v. bolus (consistent with AF studies) plus infusion regimens with TAEA and ISQ-1 demonstrated significant increases in atrial refractory period (12–15%), A-H and P-A intervals, but no effects on ventricular refractory period, H-V, and HEG intervals. The demonstration of AF termination with TAEA and ISQ-1 in the dog heart failure model extends the profile of antiarrhythmic efficacy of Kv1.5 blockade.


Journal of Cardiovascular Pharmacology | 2007

In vivo cardiac electrophysiologic and antiarrhythmic effects of an isoquinoline IKur blocker, ISQ-1, in rat, dog, and nonhuman primate.

Christopher P. Regan; Gary L. Stump; Audrey A. Wallace; Kenneth D. Anderson; Charles J. Mcintyre; Nigel J. Liverton; Joseph J. Lynch

The cardiac electrophysiologic effects of ISQ-1, an isoquinolinone IKur blocker, were characterized in vivo. In rat, ISQ-1 elicited maximal 33% to 36% increases in atrial and ventricular refractoriness at a plasma concentration of 11.5 μM. In African green monkey, ISQ-1 increased atrial refractory period (maximal 17% at plasma concentration up to 20 μM) with no effect on ventricular refractory period or ECG QTc. Likewise in dog, ISQ-1 increased atrial refractory period (maximal 16% at plasma concentration up to 2 μM) with no effect on ventricular refractory period or QTc. In contrast, studies with ibutilide in nonhuman primate and dog demonstrated concomitant increases in atrial and ventricular refractoriness and QTc. Additionally, in a dog model of atrial flutter, ISQ-1 terminated ongoing flutter at doses (2.5 ± 0.5 mg/kg IV) that selectively prolonged atrial refractoriness (13% increase), whereas flutter termination with ibutilide occurred at doses that increased both atrial and ventricular refractoriness as well as QTc. Of note, the cardiac electrophysiologic profiles displayed by ISQ-1 in these species were similar to those reported previously by our lab with a structurally distinct IKur blocker. Taken together, these results further support the inhibition of IKur as an approach to terminate atrial arrhythmia.


ACS Medicinal Chemistry Letters | 2011

Discovery of MK-1220: A Macrocyclic Inhibitor of Hepatitis C Virus NS3/4A Protease with Improved Preclinical Plasma Exposure

Michael T. Rudd; John A. McCauley; John W. Butcher; Joseph J. Romano; Charles J. Mcintyre; Kevin Nguyen; Kevin F. Gilbert; Kimberly J. Bush; M. Katharine Holloway; John Swestock; Bang-Lin Wan; Steven S. Carroll; Jillian DiMuzio; Donald J. Graham; Steven W. Ludmerer; Mark Stahlhut; Christine Fandozzi; Nicole Trainor; David B. Olsen; Joseph P. Vacca; Nigel J. Liverton

The discovery of MK-1220 is reported along with the development of a series of HCV NS3/4A protease inhibitors containing a P2 to P4 macrocyclic constraint with improved preclinical pharmacokinetics. Optimization of the P2 heterocycle substitution pattern as well as the P3 amino acid led to compounds with greatly improved plasma exposure following oral dosing in both rats and dogs while maintaining excellent enzyme potency and cellular activity. These studies led to the identification of MK-1220.


Bioorganic & Medicinal Chemistry Letters | 2010

Discovery of triarylethanolamine inhibitors of the Kv1.5 potassium channel.

Douglas C. Beshore; Nigel Liverton; Charles J. Mcintyre; Christopher F. Claiborne; Brian Libby; J. Christopher Culberson; Joseph J. Salata; Christopher P. Regan; Joseph J. Lynch; Laszlo Kiss; Robert H. Spencer; Stephanie A. Kane; Rebecca B. White; Suzie Yeh; George D. Hartman; Christopher J. Dinsmore

A series of triarylethanolamine inhibitors of the Kv1.5 potassium channel have been prepared and evaluated for their effects in vitro and in vivo. The structure-activity relationship (SAR) studies described herein led to the development of potent, selective and orally active inhibitors of Kv1.5.


Archive | 2007

Hcv ns3 protease inhibitors

M. Katharine Holloway; Nigel Liverton; Steven W. Ludmerer; John A. McCauley; David B. Olsen; Michael T. Rudd; Joseph P. Vacca; Charles J. Mcintyre


Journal of Medicinal Chemistry | 1997

Class III Antiarrhythmic Activity in Vivo by Selective Blockade of the Slowly Activating Cardiac Delayed Rectifier Potassium Current IKs by (R)-2-(2,4- Trifluoromethyl)-N-[2-oxo-5-phenyl- 1-(2,2,2-trifluoroethyl)-2,3-dihydro- 1H-benzo[e][1,4]diazepin-3-yl]acetamide

Harold G. Selnick; Nigel Liverton; John J. Baldwin; John W. Butcher; David A. Claremon; Jason Matthew Elliott; Roger M. Freidinger; Stella A. King; Brian Libby; Charles J. Mcintyre; David A. Pribush; David C. Remy; Garry R. Smith; Andrew Tebben; Nancy K. Jurkiewicz; Joseph J. Lynch; Joseph J. Salata; Michael C. Sanguinetti; Peter K. S. Siegl; Donald E. Slaughter; Kamlesh P. Vyas

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Nigel J. Liverton

University of Pennsylvania

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John A. Mccauley

United States Military Academy

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John W. Butcher

United States Military Academy

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Joseph J. Romano

United States Military Academy

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