Alain Eschalier

Affiliations: 
UMR 1107 Neurodol Université Clermont Auvergne 
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Mallet C, Desmeules J, Pegahi R, et al. (2023) An Updated Review on the Metabolite (AM404)-Mediated Central Mechanism of Action of Paracetamol (Acetaminophen): Experimental Evidence and Potential Clinical Impact. Journal of Pain Research. 16: 1081-1094
Lamoine S, Cumenal M, Barriere DA, et al. (2021) The Class I HDAC Inhibitor, MS-275, Prevents Oxaliplatin-Induced Chronic Neuropathy and Potentiates Its Antiproliferative Activity in Mice. International Journal of Molecular Sciences. 23
Å Nilsson JL, Mallet C, Shionoya K, et al. (2020) Paracetamol analogues conjugated by FAAH induce TRPV1-mediated antinociception without causing acute liver toxicity. European Journal of Medicinal Chemistry. 113042
Barrière DA, Boumezbeur F, Dalman R, et al. (2019) Acetaminophen, a centrally-acting analgesic involving the periaqueductal grey. British Journal of Pharmacology
Poupon L, Lamoine S, Pereira V, et al. (2018) Targeting the TREK-1 potassium channel via riluzole to eliminate the neuropathic and depressive-like effects of oxaliplatin. Neuropharmacology. 140: 43-61
Chenaf C, Chapuy E, Libert F, et al. (2017) Agomelatine: a new opportunity to reduce neuropathic pain-preclinical evidence. Pain. 158: 149-160
Dalmann R, Daulhac L, Antri M, et al. (2014) Supra-spinal FAAH is required for the analgesic action of paracetamol in an inflammatory context. Neuropharmacology. 91: 63-70
Rodrigues N, Bennis K, Vivier D, et al. (2014) Synthesis and structure-activity relationship study of substituted caffeate esters as antinociceptive agents modulating the TREK-1 channel European Journal of Medicinal Chemistry. 75: 391-402
Barrière DA, Mallet C, Blomgren A, et al. (2013) Fatty acid amide hydrolase-dependent generation of antinociceptive drug metabolites acting on TRPV1 in the brain. Plos One. 8: e70690
Mallet C, Barrière DA, Eschalier A. (2012) [Paracetamol: a promising ancestor]. Therapie. 67: 277-81
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