Investigating the potential neurotoxicity of Ecstasy (MDMA): an imaging approach
Liesbeth Reneman, Jan Booij, Charles B.l.m. Majoie, Wim van den Brink, Gerard J. den Heeten
Human Psychopharmacology Clinical and Experimental December 1, 2001 DOI: 10.1002/hup.347 via OpenAlex
Summary
AI-generated from the abstractHuman users of MDMA (Ecstasy) may be at risk of developing MDMA-induced neuronal injury. Previously, no methods were available for directly evaluating neurotoxic effects in the living human brain, but the development of in vivo neuroimaging tools has begun to provide insights. This review highlights contributions of brain imaging studies on the potential neurotoxic effects of MDMA and functional consequences. An overview of PET, SPECT, and MR spectroscopy studies shows evidence of neuronal injury in MDMA users. Different neuroimaging tools have investigated potential functional consequences of MDMA-induced 5-HT neurotoxic lesions. Brain imaging will play a crucial role in understanding MDMA's short- and long-term effects in the human brain.
Study at a glance
| Characteristics | Review Peer reviewed |
|---|---|
| Population | Human users of MDMA (Ecstasy) |
| Topics | MDMA |
| Keywords | Neurotoxicity Hallucinogen Neuroimaging |
| Citations | 50 |
| Key finding | Brain imaging studies show evidence of neuronal injury in MDMA users. |
Abstract
Abstract Human users of 3,4‐methylenedioxymethamphetamine (MDMA, ‘Ecstasy’) users may be at risk of developing MDMA‐induced neuronal injury. Previously, no methods were available for directly evaluating the neurotoxic effects of MDMA in the living human brain. However, development of in vivo neuroimaging tools has begun to provide insights into the effects of MDMA in the human brain. In this review, contributions of brain imaging studies on the potential neurotoxic effects of MDMA and functional consequences are highlighted. An overview is given of PET, SPECT and MR spectroscopy studies, most of which show evidence of neuronal injury in MDMA users. Different neuroimaging tools are discussed that have investigated potential functional consequences of MDMA‐induced 5‐HT neurotoxic lesions. Finally, the contribution of brain imaging in future studies is discussed, emphasising the crucial role it will play in our understanding of MDMA's short‐ and long‐term effects in the human brain. Copyright © 2001 John Wiley & Sons, Ltd.