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Martine Largeron

3 papers in the library · 5 citations · publishing 2009-2026

Papers

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Environmentally Friendly Expeditious One-Pot Electrochemical Synthesis of Bis-Catechol-Thioether Metabolites of Ecstasy: in vitro Neurotoxic Effects in the Rat Hippocampus

International Journal of Electrochemical Science February 9, 2026 Anne Felim, Anne Neudörffer, François P. Monnet et al.

A straightforward one-pot electrochemical synthesis of bis-catechol-thioether metabolites of MDMA (ecstasy), 2,5-bis(glutathion-S-yl)-N-methyl-α-methyldopamine and 2,5-bis(N-acetylcystein-S-yl)-N-methyl-α-methyldopamine, in acceptable yields and high degree of purity (99%), is described under environmentally friendly conditions. The undeniable benefits of this method, which uses...

Synthesis and Neurotoxicity Profile of 2,4,5-Trihydroxymethamphetamine and Its 6-(N-Acetylcystein-S-yl) Conjugate

Chemical Research in Toxicology May 10, 2011 Anne Neudörffer, Melanie Mueller, Claire-Marie Martinez et al. 5 citations

The purpose of the present study was to determine if trihydroxymethamphetamine (THMA), a metabolite of methylenedioxymethamphetamine (MDMA, "ecstasy"), or its thioether conjugate, 6-(N-acetylcystein-S-yl)-2,4,5-trihydroxymethamphetamine (6-NAC-THMA), play a role in the lasting effects of MDMA on brain serotonin (5-HT) neurons. To this end, novel high-yield syntheses of THMA and 6-NAC-THMA were...

Further studies on the role of metabolites in (+/-)-3,4-methylenedioxymethamphetamine-induced serotonergic neurotoxicity.

Drug metabolism and disposition: the biological fate of chemicals October 2009 Melanie Mueller, Jie Yuan, Anne Felim et al.

The mechanism by which the recreational drug (+/-)-3,4-methylenedioxymethamphetamine (MDMA) destroys brain serotonin (5-HT) axon terminals is not understood. Recent studies have implicated MDMA metabolites, but their precise role remains unclear. To further evaluate the relative importance of metabolites versus the parent compound in neurotoxicity, we explored the relationship between...