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Featured researches published by Thomas F. Pahutski.


Bioorganic & Medicinal Chemistry Letters | 2013

Discovery of cyantraniliprole, a potent and selective anthranilic diamide ryanodine receptor activator with cross-spectrum insecticidal activity

Thomas Paul Selby; George Philip Lahm; Thomas Martin Stevenson; Kenneth Andrew Hughes; Daniel Cordova; I. Billy Annan; James D. Barry; Eric A. Benner; Martin J. Currie; Thomas F. Pahutski

Anthranilic diamides are an exceptionally active class of insect control chemistry that selectively activates insect ryanodine receptors causing mortality from uncontrolled release of calcium ion stores in muscle cells. Work in this area led to the successful commercialization of chlorantraniliprole for control of Lepidoptera and other insect pests at very low application rates. In search of lower logP analogs with improved plant systemic properties, exploration of cyano-substituted anthranilic diamides culminated in the discovery of a second product candidate, cyantraniliprole, having excellent activity against a wide range of pests from multiple insect orders. Here we report on the chemistry, biology and structure-activity trends for a series of cyanoanthranilic diamides from which cyantraniliprole was selected for commercial development.


Bioorganic & Medicinal Chemistry Letters | 2013

4-Azolylphenyl isoxazoline insecticides acting at the GABA gated chloride channel.

George Philip Lahm; Daniel Cordova; James D. Barry; Thomas F. Pahutski; Ben K. Smith; Jeffrey Keith Long; Eric A. Benner; Caleb W. Holyoke; Kathleen Joraski; Ming Xu; Mark E. Schroeder; Ty Wagerle; Michael Mahaffey; Rejane M. Smith; My-Hahn Tong

Isoxazoline insecticides have been shown to be potent blockers of insect GABA receptors with excellent activity on a broad pest range, including Lepidoptera and Hemiptera. Herein we report on the synthesis, biological activity and mode-of-action for a class of 4-heterocyclic aryl isoxazoline insecticides.


Bioorganic & Medicinal Chemistry Letters | 2003

Design and synthesis of poly(ADP-ribose)polymerase-1 (PARP-1) inhibitors. Part 3: In vitro evaluation of 1,3,4,5-Tetrahydro-benzo[c][1,6]- and [c][1,7]-naphthyridin-6-ones

Dana Ferraris; Rica Pargas Ficco; Thomas F. Pahutski; Susan Lautar; Shirley Huang; Jie Zhang; Vincent J. Kalish

The 1,3,4,5-tetrahydro-benzo[c][1,6]- and [c][1,7]-napthyridin-6-ones are presented as a potent class of PARP-1 inhibitors. Derivatives of these partially saturated aza-5[H]-phenanthridin-6-ones were designed and synthesized with tertiary amines for salt formation, thus enhancing aqueous solubility, iv formulation and their potential use in acute ischemic injuries (i.e., myocardial ischemia and stroke). We found that partial saturation of the C-ring results in derivatives that are several times more potent than the aromatic C-ring derivatives. The general synthetic routes are presented herein as well as thorough in vitro potencies and SAR discussion for selected derivatives.


Pest Management Science | 2017

Mesoionic insecticides: A novel class of insecticides that modulate nicotinic acetylcholine receptors

Caleb W. Holyoke; Daniel Cordova; Wenming Zhang; James D. Barry; Robert M. Leighty; Robert F. Dietrich; James J. Rauh; Thomas F. Pahutski; George Philip Lahm; My-Hanh Thi Tong; Eric A. Benner; John L. Andreassi; Rejane M. Smith; Daniel R. Vincent; Laurie A. Christianson; Luis A Teixeira; Vineet Singh; Kenneth Andrew Hughes

BACKGROUND As the world population grows towards 9 billion by 2050, it is projected that food production will need to increase by 60%. A critical part of this growth includes the safe and effective use of insecticides to reduce the estimated 20-49% loss of global crop yields owing to pests. The development of new insecticides will help to sustain this protection and overcome insecticide resistance. RESULTS A novel class of mesoionic compounds has been discovered, with exceptional insecticidal activity on a range of Hemiptera and Lepidoptera. These compounds bind to the orthosteric site of the nicotinic acetylcholine receptor and result in a highly potent inhibitory action at the receptor with minimal agonism. The synthesis, biological activity, optimization and mode of action will be discussed. CONCLUSION Triflumezopyrim insect control will provide a powerful tool for control of hopper species in rice throughout Asia. Dicloromezotiaz can provide a useful control tool for lepidopteran pests, with an underexploited mode of action among these pests.


Bioorganic & Medicinal Chemistry Letters | 2016

Mesoionic pyrido[1,2-a]pyrimidinones: A novel class of insecticides inhibiting nicotinic acetylcholine receptors

Wenming Zhang; Caleb W. Holyoke; James D. Barry; Robert M. Leighty; Daniel Cordova; Daniel R. Vincent; Kenneth Andrew Hughes; My-Hanh Thi Tong; Stephen Frederick Mccann; Ming Xu; Twyla A. Briddell; Thomas F. Pahutski; George Philip Lahm

A novel class of mesoionic pyrido[1,2-a]pyrimidinones has been discovered with exceptional insecticidal activity controlling a number of insect species, particularly hemiptera and lepidoptera. Mode-of-action studies showed that they act on nicotinic acetylcholine receptors (nAChRs) primarily as inhibitors. Here we report the discovery, evolution, and preparation of this class of chemistry. Our efforts in structure-activity relationship elucidation and biological activity evaluation are also presented.


Bioorganic & Medicinal Chemistry Letters | 2017

Mesoionic pyrido[1,2-a]pyrimidinones: Discovery of triflumezopyrim as a potent hopper insecticide1

Wenming Zhang; Caleb W. Holyoke; Thomas F. Pahutski; George Philip Lahm; James D. Barry; Daniel Cordova; Robert M. Leighty; Vineet Singh; Daniel R. Vicent; My-Hanh Thi Tong; Kenneth Andrew Hughes; Stephen Frederick Mccann; Yewande T. Henry; Ming Xu; Twyla A. Briddell

A novel class of mesoionic pyrido[1,2-a]pyrimidinones has been discovered with exceptional insecticidal activity controlling a number of insect species. In this communication, we report the part of the optimization program which led to the discovery of triflumezopyrim as a highly potent insecticide controlling various hopper species. Our efforts in discovery, synthesis, structure-activity relationship elucidation, and biological activity evaluation are also presented.


Bioorganic & Medicinal Chemistry Letters | 2017

Mesoionic pyrido[1,2-a]pyrimidinones: Discovery of dicloromezotiaz as a lepidoptera insecticide acting on nicotinic acetylcholine receptors1,2

Wenming Zhang; Caleb W. Holyoke; James D. Barry; Daniel Cordova; Robert M. Leighty; My-Hanh Thi Tong; Kenneth Andrew Hughes; George Philip Lahm; Thomas F. Pahutski; Ming Xu; Twyla A. Briddell; Stephen Frederick Mccann; Yewande T. Henry; Yuzhong Chen

A novel class of mesoionic pyrido[1,2-a]pyrimidinones has been discovered with exceptional insecticidal activity controlling a number of insect species. In this communication, we report the part of the optimization program that led to the identification of dicloromezotiaz as a potent insecticide to control a broad range of lepidoptera. Our efforts in discovery, synthesis, structure-activity relationship elucidation, and biological activity evaluation are also presented.


Bioorganic & Medicinal Chemistry Letters | 2017

The discovery of fluazaindolizine: A new product for the control of plant parasitic nematodes

George Philip Lahm; Johan Desaeger; Ben K. Smith; Thomas F. Pahutski; Michel A. Rivera; Tony Meloro; Roman Kucharczyk; Renee Marie Lett; Anne Daly; Brenton Todd Smith; Daniel Cordova; Tim Thoden; John A. Wiles

Fluazaindolizine is a new highly effective and selective product for the control of plant parasitic nematodes. Specificity for nematodes coupled with absence of activity against the target sites of commercial nematicides suggests that fluazaindolizine has a novel mode of action. The discovery, structure-activity development and biological properties for this new class of nematicides are presented.


Archive | 2006

5-aryl isoxazolines for controlling invertebrate pests

George Philip Lahm; Kanu Maganbhai Patel; Thomas F. Pahutski; Benjamin Kenneth Smith; Jeffrey Keith Long


Journal of Medicinal Chemistry | 2003

Design and Synthesis of Poly ADP-ribose Polymerase-1 Inhibitors. 2. Biological Evaluation of Aza-5[H]-phenanthridin-6-ones as Potent, Aqueous-Soluble Compounds for the Treatment of Ischemic Injuries

Dana Ferraris; Yao-Sen Ko; Thomas F. Pahutski; Rica Pargas Ficco; Larisa E. Serdyuk; Christina Alemu; Chadwick Bradford; Tiffany Chiou; Randall Hoover; Shirley Huang; Susan Lautar; Shi Liang; Qian Lin; May X.-C Lu; Maria Lourdes Mooney; Lisa Morgan; Yongzhen Qian; Scott Tran; Lawrence R. Williams; Qi Yi Wu; Jie Zhang; and Yinong Zou; Vincent J. Kalish

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