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Dive into the research topics where Francois Pautrat is active.

Publication


Featured researches published by Francois Pautrat.


Nature | 2008

A new class of anthelmintics effective against drug-resistant nematodes

Ronald Kaminsky; Pierre Ducray; Martin Jung; Ralph Clover; Lucien Rufener; Jacques Bouvier; Sandra Schorderet Weber; Andre Wenger; Susanne Christine Wieland-Berghausen; Thomas Goebel; Noëlle Gauvry; Francois Pautrat; Thomas Skripsky; Olivier Froelich; Clarisse Komoin-Oka; Bethany Westlund; Ann Sluder; Pascal Mäser

Anthelmintic resistance in human and animal pathogenic helminths has been spreading in prevalence and severity to a point where multidrug resistance against the three major classes of anthelmintics—the benzimidazoles, imidazothiazoles and macrocyclic lactones—has become a global phenomenon in gastrointestinal nematodes of farm animals. Hence, there is an urgent need for an anthelmintic with a new mode of action. Here we report the discovery of the amino-acetonitrile derivatives (AADs) as a new chemical class of synthetic anthelmintics and describe the development of drug candidates that are efficacious against various species of livestock-pathogenic nematodes. These drug candidates seem to have a novel mode of action involving a unique, nematode-specific clade of acetylcholine receptor subunits. The AADs are well tolerated and of low toxicity to mammals, and overcome existing resistances to the currently available anthelmintics.


Bioorganic & Medicinal Chemistry Letters | 2008

Discovery of amino-acetonitrile derivatives, a new class of synthetic anthelmintic compounds

Pierre Ducray; Noëlle Gauvry; Francois Pautrat; Thomas Goebel; Joerg Fruechtel; Yves Desaules; Sandra Schorderet Weber; Jacques Bouvier; Trixie Wagner; Olivier Froelich; Ronald Kaminsky

A new series of amino-acetonitrile derivatives (AAD) have been discovered that exhibit high anthelmintic activity against parasitic nematode species such as Haemonchus contortus and Trichostrongylus colubriformis. Significantly, these compounds also demonstrate activity against nematode strains resistant to the currently available broad-spectrum anthelmintics. The discovery, synthesis, structure-activity relationship and biological results are presented.


Parasitology Research | 2008

Identification of the amino-acetonitrile derivative monepantel (AAD 1566) as a new anthelmintic drug development candidate

Ronald Kaminsky; Noëlle Gauvry; S. Schorderet Weber; Thomas Skripsky; Jacques Bouvier; A. Wenger; F. Schroeder; Y. Desaules; R. Hotz; Thomas Goebel; B.C. Hosking; Francois Pautrat; Susanne Christine Wieland-Berghausen; Pierre Ducray


Archive | 2009

Isoxazolines derivatives and their use as pesticide

Steve Nanchen; Noëlle Gauvry; Francois Pautrat


Archive | 2005

Process for the preparation of enantiomers of amidoacetonitrile compounds from their racemates

Pierre Ducray; Noëlle Gauvry; Thomas Goebel; Francois Pautrat


Archive | 2007

Pyrimidine derivatives and their use as pesticides

Noëlle Gauvry; Francois Pautrat; Jacques Bouvier; Jörg Früchtel; B. Bapst; Sandra Schorderet Weber


Archive | 2005

Use of Pyrimidine Compounds in the Preparation of Parasiticides

Jörg Früchtel; Noëlle Gauvry; Sandra Schorderet-Weber; Tania Cavaliero; Jacques Bouvier; Francois Pautrat


Archive | 2016

SUBSTITUTED AZINES AS PESTICIDES

Noëlle Gauvry; Francois Pautrat


Archive | 2017

NEW SULFONYLAMINOBENZAMIDE COMPOUNDS

Noëlle Gauvry; Francois Pautrat; Jean Luc Perret; Chouaib Tahtaoui


Archive | 2011

Use of 4, 6 - bis - phenoxy - 5 - aminopyrimidines in the control of agricultural inverterbrate pests

Jacques Bouvier; Pierre Ducray; Francois Pautrat

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