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Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology|February 15, 2007
Non-nociceptive environmental stress induces hyperalgesia, not analgesia, in pain and opioid-experienced ratsCyril Rivat, Emilie Laboureyras, Jean-Paul Laulin, et al.Pain Research & Management|May 20, 2014
Exogenous and endogenous opioid-induced pain hypersensitivity in different rat strainsEmilie Laboureyras, Frédéric Aubrun, Maud Monsaingeon, et al.The Journal of Pain|July 5, 2011
Endogenous opioids released during non-nociceptive environmental stress induce latent pain sensitization Via a NMDA-dependent processChloé Le Roy, Emilie Laboureyras, Stéphanie Gavello-Baudy, et al.Pain|September 29, 2007
Polyamine deficient diet to relieve pain hypersensitivityCyril Rivat, Philippe Richebé, Emilie Laboureyras, et al.ACS Chemical Neuroscience|May 5, 2018
Aminoguanidine Hydrazone Derivatives as Nonpeptide NPFF1 Receptor Antagonists Reverse Opioid Induced HyperalgesiaHassan Hammoud, Khadija Elhabazi, Raphäelle Quillet, et al.Bioorganic & Medicinal Chemistry Letters|November 8, 2012
Development of sub-nanomolar dipeptidic ligands of neuropeptide FF receptorsRonan Gealageas, Séverine Schneider, Jean-Paul Humbert, et al.ACS Chemical Neuroscience|January 16, 2015
Development of a peptidomimetic antagonist of neuropeptide FF receptors for the prevention of opioid-induced hyperalgesiaFrédéric Bihel, Jean-Paul Humbert, Séverine Schneider, et al.Proceedings of the National Academy of Sciences of the United States of America|January 13, 2006
RF9, a potent and selective neuropeptide FF receptor antagonist, prevents opioid-induced tolerance associated with hyperalgesiaFrédéric Simonin, Martine Schmitt, Jean-Paul Laulin, et al.Neuropharmacology|March 15, 2017
RF313, an orally bioavailable neuropeptide FF receptor antagonist, opposes effects of RF-amide-related peptide-3 and opioid-induced hyperalgesia in rodentsKhadija Elhabazi, Jean-Paul Humbert, Isabelle Bertin, et al.Pageof 2