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Dive into the research topics where Pratik Devasthale is active.

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Featured researches published by Pratik Devasthale.


Bioorganic & Medicinal Chemistry Letters | 2009

Design, synthesis and structure-activity relationships of azole acids as novel, potent dual PPAR alpha/gamma agonists.

Hongjian Zhang; Denis E. Ryono; Pratik Devasthale; Wei Wang; K O'Malley; Dennis Farrelly; Liqun Gu; Tom Harrity; Michael Cap; Cuixia Chu; Kenneth T. Locke; Litao Zhang; Jonathan Lippy; Lori Kunselman; Nathan Morgan; Neil Flynn; Lisa Moore; Hosagrahara; Pathanjali Kadiyala; Cen Xu; Arthur M. Doweyko; A Bell; Jodi K. Muckelbauer; Robert Zahler; Narayanan Hariharan; Peter T. W. Cheng

The design, synthesis and structure-activity relationships of a novel series of N-phenyl-substituted pyrrole, 1,2-pyrazole and 1,2,3-triazole acid analogs as PPAR ligands are outlined. The triazole acid analogs 3f and 4f were identified as potent dual PPARalpha/gamma agonists both in binding and functional assays in vitro. The 3-oxybenzyl triazole acetic acid analog 3f showed excellent glucose and triglyceride lowering in diabetic db/db mice.


Journal of Medicinal Chemistry | 2010

Discovery of an oxybenzylglycine based peroxisome proliferator activated receptor alpha selective agonist 2-((3-((2-(4-chlorophenyl)-5-methyloxazol-4-yl)methoxy)benzyl)(methoxycarbonyl)amino)acetic acid (BMS-687453).

Jun Li; Lawrence J. Kennedy; Yan Shi; Shiwei Tao; Xiang-Yang Ye; Stephanie Y. Chen; Ying Wang; Andres S. Hernandez; Wei Wang; Pratik Devasthale; Sean Chen; Zhi Lai; Hao Zhang; Shung Wu; Rebecca A. Smirk; Scott A. Bolton; Denis E. Ryono; Huiping Zhang; Ngiap-Kie Lim; Bang-Chi Chen; Kenneth T. Locke; Kevin O’Malley; Litao Zhang; Rai Ajit Srivastava; Bowman Miao; Daniel Meyers; Hossain Monshizadegan; Debra Search; Denise Grimm; Rongan Zhang

An 1,3-oxybenzylglycine based compound 2 (BMS-687453) was discovered to be a potent and selective peroxisome proliferator activated receptor (PPAR) alpha agonist, with an EC(50) of 10 nM for human PPARalpha and approximately 410-fold selectivity vs human PPARgamma in PPAR-GAL4 transactivation assays. Similar potencies and selectivity were also observed in the full length receptor co-transfection assays. Compound 2 has negligible cross-reactivity against a panel of human nuclear hormone receptors including PPARdelta. Compound 2 demonstrated an excellent pharmacological and safety profile in preclinical studies and thus was chosen as a development candidate for the treatment of atherosclerosis and dyslipidemia. The X-ray cocrystal structures of the early lead compound 12 and compound 2 in complex with PPARalpha ligand binding domain (LBD) were determined. The role of the crystal structure of compound 12 with PPARalpha in the development of the SAR that ultimately resulted in the discovery of compound 2 is discussed.


Bioorganic & Medicinal Chemistry Letters | 2008

Discovery of azetidinone acids as conformationally-constrained dual PPARα/γ agonists

Wei Wang; Pratik Devasthale; Dennis Farrelly; Liqun Gu; Thomas Harrity; Michael Cap; Cuixia Chu; Lori Kunselman; Nathan Morgan; Randy Ponticiello; Rachel Zebo; Litao Zhang; Kenneth T. Locke; Jonathan Lippy; Kevin O’Malley; Vinayak Hosagrahara; Lisa Zhang; Pathanjali Kadiyala; Chiehying Chang; Jodi K. Muckelbauer; Arthur M. Doweyko; Robert Zahler; Denis E. Ryono; Narayanan Hariharan; Peter T. W. Cheng

A novel class of azetidinone acid-derived dual PPARalpha/gamma agonists has been synthesized for the treatment of diabetes and dyslipidemia. The preferred stereochemistry in this series for binding and functional agonist activity against both PPARalpha and PPARgamma receptors was shown to be 3S,4S. Synthesis, in vitro and in vivo activities of compounds in this series are described. A high-yielding method for N-arylation of azetidinone esters is also described.


Journal of Pharmacology and Experimental Therapeutics | 2007

The Dual Peroxisome Proliferator-Activated Receptor α/γ Activator Muraglitazar Prevents the Natural Progression of Diabetes in db/db Mice

Effie Tozzo; Randolph Ponticiello; JoAnn Swartz; Dennis Farrelly; Rachel Zebo; Gustav Welzel; Donald M. Egan; Lori Kunselman; Andrew Peters; Liqun Gu; Michele H. French; Sean Chen; Pratik Devasthale; Evan B. Janovitz; Ada Staal; Thomas Harrity; Rene Belder; Peter T. W. Cheng; Jean M. Whaley; Simeon Taylor; Narayanan Hariharan

There are two major defects in type 2 diabetes: 1) insulin resistance and 2) insulin deficiency due to loss of β-cell function. Here we demonstrated that treatment with muraglitazar (a dual peroxisome proliferator-activated receptor α/γ activator), when initiated before or after the onset of diabetes in mice, is effective against both defects. In study 1, prediabetic db/db mice were treated for 12 weeks. The control mice developed diabetes, as evidenced by hyperglycemia, hyperinsulinemia, reduced insulin levels in the pancreas, blunted insulin response to glucose, and impaired glucose tolerance. The muraglitazar-treated mice had normal plasma glucose, and insulin levels, equivalent or higher pancreatic insulin content than normal mice, showed a robust insulin response to glucose and exhibited greater glucose tolerance. In study 2, diabetic db/db mice were treated for 4 weeks. The control mice displayed increased glucose levels, severe loss of islets, and their isolated islets secreted reduced amounts of insulin in response to glucose and exendin-4 compared with baseline. In muraglitazar-treated mice, glucose levels were reduced to normal. These mice showed reduced loss of islets, and their isolated islets secreted insulin at levels comparable to baseline. Thus, muraglitazar treatment decreased both insulin resistance and preserved β-cell function. As a result, muraglitazar treatment, when initiated before the onset of diabetes, prevented development of diabetes and, when initiated after the onset of diabetes, prevented worsening of diabetes in db/db mice.


Journal of Medicinal Chemistry | 2014

Identification of a nonbasic melanin hormone receptor 1 antagonist as an antiobesity clinical candidate.

William N. Washburn; Mark Manfredi; Pratik Devasthale; Guohua Zhao; Saleem Ahmad; Andres Hernandez; Jeffrey A. Robl; Wei Wang; James Mignone; Zhenghua Wang; Khehyong Ngu; Mary Ann Pelleymounter; Daniel Longhi; Rulin Zhao; Bei Wang; Ning Huang; Neil Flynn; Anthony V. Azzara; Joel C. Barrish; Kenneth Rohrbach; James Devenny; Michael J. Thomas; Susan Glick; Helen E. Godonis; Susan J. Harvey; Mary Jane Cullen; Hongwei Zhang; Christian Caporuscio; Paul Stetsko; Mary F. Grubb

Identification of MCHR1 antagonists with a preclinical safety profile to support clinical evaluation as antiobesity agents has been a challenge. Our finding that a basic moiety is not required for MCHR1 antagonists to achieve high affinity allowed us to explore structures less prone to off-target activities such as hERG inhibition. We report the SAR evolution of hydroxylated thienopyrimidinone ethers culminating in the identification of 27 (BMS-819881), which entered obesity clinical trials as the phosphate ester prodrug 35 (BMS-830216).


Journal of Medicinal Chemistry | 2013

Optimization of Activity, Selectivity, and Liability Profiles in 5-Oxopyrrolopyridine DPP4 Inhibitors Leading to Clinical Candidate (Sa)-2-(3-(Aminomethyl)-4-(2,4-dichlorophenyl)-2-methyl-5-oxo-5H-pyrrolo[3,4-b]pyridin-6(7H)-yl)-N,N-dimethylacetamide (BMS-767778)

Pratik Devasthale; Ying Wang; Wei Wang; John Matthew Fevig; Jianxin Feng; Aiying Wang; Tom Harrity; Don Egan; Nathan Morgan; Michael Cap; Aberra Fura; Herbert E. Klei; Kevin Kish; Carolyn Weigelt; Lucy Sun; Paul Levesque; Frederic Moulin; Yi-Xin Li; Robert Zahler; Mark S. Kirby; Lawrence G. Hamann

Optimization of a 5-oxopyrrolopyridine series based upon structure-activity relationships (SARs) developed from our previous efforts on a number of related bicyclic series yielded compound 2s (BMS-767778) with an overall activity, selectivity, efficacy, PK, and developability profile suitable for progression into the clinic. SAR in the series and characterization of 2s are described.


Bioorganic & Medicinal Chemistry Letters | 2011

7-Oxopyrrolopyridine-derived DPP4 inhibitors-mitigation of CYP and hERG liabilities via introduction of polar functionalities in the active site.

Wei Wang; Pratik Devasthale; Aiying Wang; Tom Harrity; Don Egan; Nathan Morgan; Michael Cap; Aberra Fura; Herbert E. Klei; Kevin Kish; Carolyn A. Weigelt; Lucy Sun; Paul Levesque; Yi-Xin Li; Robert Zahler; Mark S. Kirby; Lawrence G. Hamann

Design, synthesis, and SAR of 7-oxopyrrolopyridine-derived DPP4 inhibitors are described. The preferred stereochemistry of these atropisomeric biaryl analogs has been identified as Sa. Compound (+)-3t, with a K(i) against DPP4, DPP8, and DPP9 of 0.37 nM, 2.2, and 5.7 μM, respectively, showed a significant improvement in insulin response after single doses of 3 and 10 μmol/kg in ob/ob mice.


Bioorganic & Medicinal Chemistry Letters | 2015

Synthesis and biological evaluation of novel pyrrolidine acid analogs as potent dual PPARα/γ agonists.

Hao Zhang; Charles Z. Ding; Zhi Lai; Sean S. Chen; Pratik Devasthale; Tim Herpin; George C. Morton; Fucheng Qu; Denis E. Ryono; Rebecca A. Smirk; Wei Wang; Shung Wu; Xiang-Xang Ye; Yi-Xin Li; Atsu Apedo; Dennis Farrelly; Tao Wang; Liqun Gu; Nathan Morgan; Neil Flynn; Cuixia Chu; Lori Kunselman; Jonathan Lippy; Kenneth T. Locke; Kevin O’Malley; Thomas Harrity; Michael Cap; Lisa Zhang; Vinayak Hosagrahara; Pathanjali Kadiyala

The design, synthesis and structure-activity relationships of a novel series of 3,4-disubstituted pyrrolidine acid analogs as PPAR ligands is outlined. In both the 1,3- and 1,4-oxybenzyl pyrrolidine acid series, the preferred stereochemistry was shown to be the cis-3R,4S isomer, as exemplified by the potent dual PPARα/γ agonists 3k and 4i. The N-4-trifluoromethyl-pyrimidinyl pyrrolidine acid analog 4i was efficacious in lowering fasting glucose and triglyceride levels in diabetic db/db mice.


Bioorganic & Medicinal Chemistry Letters | 2015

Non-basic azolotriazinone MCHR1 antagonists for the treatment of obesity: An empirical brain-exposures-driven candidate selection for in vivo efficacy studies.

Pratik Devasthale; Wei Wang; James Mignone; Kishore Renduchintala; Sridhar Radhakrishnan; Jayanthi Dhanapal; Jagannath Selvaraj; Rajesh Kuppusamy; Mary Ann Pelleymounter; Daniel Longhi; Ning Huang; Neil Flynn; Anthony V. Azzara; Kenneth W. Rohrbach; James Devenny; Michael Thomas; Susan Glick; Helen Godonis; Susan J. Harvey; Mary Jane Cullen; Hongwei Zhang; Christian Caporuscio; Paul Stetsko; Mary F. Grubb; Christine Huang; Lisa Zhang; Chris Freeden; Brian J. Murphy; Jeffrey A. Robl; William N. Washburn

Non-basic azolotriazinones were explored using an empirical free brain exposures-driven approach to identify potent MCHR1 antagonists for evaluation in in vivo efficacy studies. An optimized lead from this series, 1j (rMCHR1 Ki=1.8 nM), demonstrated a 6.9% reduction in weight gain relative to vehicle in a rat model at 30 mg/kg after 4 days of once-daily oral treatment as a glycine prodrug. Despite a promising efficacy profile, an assessment of the biliary toxicity risk of this compound rendered this compound non-progressible.


Bioorganic & Medicinal Chemistry Letters | 2015

Dihydropyrrolopyrazol-6-one MCHR1 antagonists for the treatment of obesity: Insights on in vivo efficacy from a novel FLIPR assay setup

Pratik Devasthale; Wei Wang; Andres S. Hernandez; Fang Moore; Kishore Renduchintala; Radhakrishnan Sridhar; Mary Ann Pelleymounter; Daniel Longhi; Ning Huang; Neil Flynn; Anthony V. Azzara; Kenneth W. Rohrbach; James Devenny; Michael Thomas; Susan Glick; Helen Godonis; Susan J. Harvey; Mary Jane Cullen; Hongwei Zhang; Christian Caporuscio; Paul Stetsko; Mary F. Grubb; Christine Huang; Lisa Zhang; Chris Freeden; Yi-Xin Li; Brian J. Murphy; Jeffrey A. Robl; William N. Washburn

Our investigation of the structure-activity and structure-liability relationships for dihydropyrrolopyrazol-6-one MCHR1 antagonists revealed that off-rate characteristics, inferred from potencies in a FLIPR assay following a 2 h incubation, can impact in vivo efficacy. The in vitro and exposure profiles of dihydropyrrolopyrazol-6-ones 1b and 1e were comparable to that of the thienopyrimidinone counterparts 41 and 43 except for a much faster MCHR1 apparent off-rate. The greatly diminished dihydropyrrolopyrazol-6-one anti-obesity response may be the consequence of this rapid off-rate.

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Wei Wang

Chinese Academy of Sciences

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