Jeffrey Keith Long
DuPont
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Publication
Featured researches published by Jeffrey Keith Long.
Veterinary Parasitology | 2014
Wesley Lawrence Shoop; Eric J. Hartline; Brandon R. Gould; Molly E. Waddell; Richard G. McDowell; John Kinney; George Philip Lahm; Jeffrey Keith Long; Ming Xu; Ty Wagerle; Gail S. Jones; Robert F. Dietrich; Daniel Cordova; Mark E. Schroeder; Daniel F. Rhoades; Eric A. Benner; Pat N. Confalone
Afoxolaner is an isoxazoline compound characterized by a good safety profile and extended effectiveness against fleas and ticks on dogs following a single oral administration. In vitro membrane feeding assay data and in vivo pharmacokinetic studies in dogs established an afoxolaner blood concentration of 0.1-0.2 μg/ml to be effective against both fleas (Ctenocephalides felis) and ticks (Dermacentor variabilis). Pharmacokinetic profiles in dogs following a 2.5mg/kg oral dosage demonstrated uniform and predictable afoxolaner plasma concentrations above threshold levels required for efficacy for more than one month. Dose ranging and a 5-month multi-dose experimental study in dogs, established that the 2.5mg/kg oral dosage was highly effective against fleas and ticks, and produced predictable and reproducible pharmacokinetics following repeated dosing. Mode of action studies showed that afoxolaner blocked native and expressed insect GABA-gated chloride channels with nanomolar potency. Afoxolaner has comparable potency between wild type channels and channels possessing the A302S (resistance-to-dieldrin) mutation. Lack of cyclodiene cross-resistance for afoxolaner was confirmed in comparative Drosophila toxicity studies, and it is concluded that afoxolaner blocked GABA-gated chloride channels via a site distinct from the cyclodienes.
Bioorganic & Medicinal Chemistry Letters | 2013
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 | 2014
Ming Xu; Ty Wagerle; Jeffrey Keith Long; George Philip Lahm; James D. Barry; Rejane M. Smith
A series of quinoline and isoquinoline isoxazolines have been designed as pesticides for crop protection. Herein we reported the chemical synthesis, biological activity and structure-activity relationships. The isoquinoline derivative, such as 3i, is discovered as potent new class of isoxazoline insecticide which is competitive with commercial insecticide Indoxacarb.
Archive | 2006
George Philip Lahm; Kanu Maganbhai Patel; Thomas F. Pahutski; Benjamin Kenneth Smith; Jeffrey Keith Long
Archive | 2008
George Philip Lahm; Jeffrey Keith Long; Ming Xu
Archive | 2008
George Philip Lahm; Jeffrey Keith Long; Ming Xu
Archive | 2008
Jeffrey Keith Long; Thomas Paul Selby; Ming Xu
Archive | 2007
Dominic Ming-Tak Chan; Jeffrey Keith Long; Thomas Martin Stevenson
Archive | 2004
Dominic Ming-Tak Chan; Balreddy Kamireddy; Jeffrey Keith Long; Kanu Maganbhai Patel; Paula Louise Sharpe
Archive | 2008
Amy X. Ding; Jeffrey Keith Long; Stephen Frederick Mccann; Paula Louise Sharpe; Andrew Edmund Taggi; Chi-Ping Tseng