Biochemical effects of the monoamine neurotoxins DSP-4 and MDMA in specific brain regions of MAO-B-deficient mice
Francesco Fornai, Filippo Sean Giorgi, Marco Gesi, Kai Chen, Maria G. Alessr�, Jean C. Shih
Synapse January 1, 2001 DOI: 10.1002/1098-2396(20010301)39:3<213::aid-syn1002>3.0.co;2-w via OpenAlex
Summary
AI-generated from the abstractIn mice lacking the enzyme monoamine oxidase B (MAO-B), the neurotoxin DSP-4 caused the same loss of norepinephrine in brain regions as it did in normal mice, indicating MAO-B is not involved in DSP-4 toxicity. For the neurotoxin MDMA (ecstasy), MAO-B deficiency prevented the serotonin depletion normally seen in wild-type mice but led to a more pronounced dopamine loss. These results suggest MAO-B plays opposite roles in MDMA-induced damage to dopamine and serotonin systems.
Study at a glance
| Characteristics | Experimental study Peer reviewed |
|---|---|
| Population | MAO-B-deficient and wild-type mice |
| Interventions | DSP-4 MDMA |
| Dose | 50 mg/kg DSP-4; 50 mg/kg x 2 MDMA, 2 h apart |
| Duration | 1 week after neurotoxin administration |
| Topics | MDMA Serotonin |
| Keywords | Neurotoxin Dopamine Monoamine neurotransmitter |
| Citations | 54 |
| Key finding | MAO-B deficiency prevents MDMA-induced serotonin depletion but worsens dopamine loss, and does not affect DSP-4 toxicity. |
Abstract
Previous studies reported that drugs acting as monoamine oxidase (MAO)-B inhibitors prevented biochemical effects induced by the neurotoxins N-(2-chloroethyl)-N-ethyl-2-bromobenzylamine (DSP-4) and 3,4-methylenedioxymethamphetamine (MDMA, "ecstasy"). In this study, we administered DSP-4 (50 mg/kg) or MDMA (50 mg/kg x 2, 2 h apart) to MAO-B deficient mice. Monoamine content in various brain regions (cerebellum, frontal cortex, hippocampus, hypothalamus, striatum, substantia nigra) was assayed 1 week after neurotoxin administration. Injection of DSP-4 to wild-type mice caused a marked norepinephrine (NE) loss in specific brain regions. Unexpectedly, DSP-4 caused similar effects in MAO-B-deficient and in wild-type mice in all brain regions investigated. These results suggest that MAO-B is not involved in DSP-4 toxicity. In wild-types, the neurotoxin MDMA induced both serotonin (5HT) and dopamine (DA) depletion in specific brain areas. In MAO-B-deficient mice, 5HT depletion observed in wild-types did not occur. In contrast, MDMA produced a more pronounced DA loss in knockout mice compared with wild-types. The present findings, together with previous data obtained using selective enzyme inhibitors, suggest that MAO-B is not involved in the mechanism of action of DSP-4, whereas it plays opposite roles in MDMA-induced DA and 5HT depletions.