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N,N-dimethyl-thioamphetamine and methyl-thioamphetamine, two non-neurotoxic substrates of 5-HT transporters, have scant in vitro efficacy for the induction of transporter-mediated 5-HT release and currents
Authors:Gobbi Marco  Funicello Marcella  Gerstbrein Klaus  Holy Marion  Moya Pablo R  Sotomayor Ramón  Forray María Inés  Gysling Katia  Paluzzi Silvio  Bonanno Giambattista  Reyes-Parada Miguel  Sitte Harald H  Mennini Tiziana
Institution:Istituto di Ricerche Farmacologiche "Mario Negri", Italy;
Institute of Pharmacology, Medical University of Vienna, Vienna, Austria;
Laboratory of Clinical Science, National Institute of Mental Health, NIH, Bethesda, Maryland, USA;
Department of Cellular and Molecular Biology, Faculty of Biological Sciences, Catholic University of Chile, Santiago, Chile;
Department of Experimental Medicine –Section of Pharmacology and Toxicology and Center of Excellence for Biomedical Research, University of Genoa, Italy;
Faculty of Medical Sciences, University of Santiago de Chile and Millennium Institute for Cell Dynamics and Biotechnology, Santiago, Chile
Abstract:We studied two non-neurotoxic amphetamine derivatives (methyl-thioamphetamine, MTA and N,N- dimethylMTA, DMMTA) interacting with serotonin (5-HT) transporters (SERTs) with affinities comparable to that of p- Cl-amphetamine (pCA). The rank order for their maximal effects in inducing both 3H]5-HT release from rat brain synaptosomes or hSERT-expressing HEK-293 cells, and currents in hSERT-expressing oocytes, was pCA >> MTA ≥ DMMTA. A correlation between drug-induced release and currents is also strengthened by the similar bell shape of the dose–response curves. Release experiments indicated that MTA and DMMTA are SERT substrates although MTA is taken up by HEK-293 cells with a V max 40% lower than pCA. The weak effects of MTA and DMMTA in vitro might therefore be due to their properties as 'partial substrates' on the mechanisms, other than translocation, responsible for currents and/or release. After either local or systemic in vivo administration, MTA and DMMTA release 5-HT in a manner comparable to pCA. These findings confirm that the neurotoxic properties of some amphetamine derivatives are independent of their 5-HT-releasing activity in vivo . It is worth noting that only those amphetamine derivatives with high efficiency in inducing 5-HT release and currents in vitro have neurotoxic properties.
Keywords:methyl-thioamphetamine              N  N-dimethyl-thioamphetamine  neurotoxicity  p-Cl-amphetamine  serotonin release  serotonin transporters
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