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Updated: Jun 12, 2025

High-throughput and Comprehensive Drug Surveillance Using Multisegment Injection-Capillary Electrophoresis-Mass Spectrometry
Published on: April 23, 2019
Post mortem chiral analysis of MDMA and MDA in human blood and hair
Julian Bickel1, Alexander Müller1, Hilke Jungen1
1Institute of Legal Medicine, University Medical Centre Hamburg-Eppendorf, Butenfeld 34, Hamburg 22529, Germany.
Abstract:
Drug-related fatalities in the EU are predominantly associated with opioids. MDMA (Ecstasy) consumption results in fewer lethal intoxications despite its widespread use. This study investigates MDMA-related fatalities, focusing on enantiomer ratios of MDMA and its metabolite MDA to explore the role of metabolism in fatal outcomes. MDMA induces euphoria, increased empathy, and physiological effects such as tachycardia, hypertension, and hyperthermia. Metabolism mainly involves CYP1A2 and CYP2D6, with polymorphism of the latter influencing metabolism rates. Our institute observed several MDMA-related fatalities, which prompted an investigation into the potential role of inefficient drug metabolism in these cases. A novel quantitative chiral analysis method was developed and validated for MDMA, MDA, amphetamine and methamphetamine enantiomers in human blood. Analysis of post mortem blood samples from eleven MDMA-related fatalities exhibited a wide range of concentrations and enantiomer ratios. Variability in R/S MDMA ratios, however, could be linked to the time period of metabolism. Hair analysis revealed high MDMA concentrations in all segments, irrespective of prior drug abuse anamnesis. Therefore, hair analysis may not be suitable for the assessment of past drug use in ecstasy-related fatalities. The results indicated that elevated levels of the MDMA enantiomer are correlated with longer survival times in cases of intoxication. However, there was no clear evidence for slowed MDMA metabolism as a cause of lethal intoxications. While challenges remain due to the diversity of cases, this study contributes valuable insights into ecstasy intoxications, aiding future interpretation of post mortem analysis.
Insights
This study examined fatal MDMA (Ecstasy) intoxications, finding no clear evidence of slowed drug metabolism causing death. Elevated levels of a specific MDMA enantiomer correlated with longer survival times in fatalities.
Area of Science:
- Forensic Toxicology
- Pharmacology
- Analytical Chemistry
Background:
- Opioids dominate EU drug fatalities, but widespread MDMA (Ecstasy) use causes fewer deaths.
- MDMA's physiological effects include euphoria, empathy, tachycardia, hypertension, and hyperthermia.
- MDMA metabolism primarily involves CYP1A2 and CYP2D6 enzymes, with genetic variations affecting rates.
Purpose of the Study:
- Investigate MDMA-related fatalities to understand the role of metabolism in lethal outcomes.
- Explore the significance of MDMA and its metabolite MDA enantiomer ratios in fatal cases.
- Assess the utility of novel quantitative chiral analysis in post mortem samples.
Main Methods:
- Developed and validated a novel quantitative chiral analysis method for MDMA, MDA, amphetamine, and methamphetamine enantiomers in human blood.
- Analyzed post mortem blood samples from eleven MDMA-related fatalities.
- Conducted hair analysis to assess MDMA concentrations across different segments.
Main Results:
- Post mortem blood analysis revealed wide ranges in MDMA concentrations and enantiomer ratios.
- Variability in R/S MDMA ratios may indicate time since metabolism.
- Hair analysis showed high MDMA levels regardless of drug abuse history, questioning its utility for assessing past use in fatalities.
- Elevated levels of a specific MDMA enantiomer correlated with longer survival times.
Conclusions:
- No clear evidence suggests slowed MDMA metabolism is the primary cause of lethal intoxications.
- Hair analysis is not reliable for assessing past drug use in ecstasy-related fatalities.
- Findings provide valuable insights for interpreting post mortem analyses in MDMA intoxication cases.

