Mildronate (Meldonium) in professional sports : monitoring doping control urine samples using hydrophilic interaction liquid chromatography - high resolution/high accuracy mass spectrometry

Mildronate (Meldonium) in professional sports : monitoring doping control urine samples using hydrophilic interaction liquid chromatography - high resolution/high accuracy mass spectrometry / Christian Görgens, Sven Guddat, Josef Dib, Hans Geyer, Wilhelm Schänzer, Mario Thevis. - (Drug Testing and Analysis 7 (2015) 11-12 (November-December) p. 973-979)

  • DOI: 10.1002/dta.1788

Content:


- Introduction
- Experimental
• Chemicals and reagents
• Synthesis of labelled IS
• Sample preparation
• LC-MS/MS
* Initial testing
* Confirmatory analysis
• Method validation
• Routine doping control samples
- Results and discussion
• Mass spectrometry
• Liquid chromatography
• Method validation
• Routine doping control samples
- Conclusion


Abstract:

To date, substances such as Mildronate (Meldonium) are not on the radar of anti-doping laboratories as the compound is not explicitly classified as prohibited. However, the anti-ischemic drug Mildronate demonstrates an increase in endurance performance of athletes, improved rehabilitation after exercise, protection against stress, and enhanced activations of central nervous system (CNS) functions.
In the present study, the existing evidence of Mildronate’s usage in sport,which is arguably not exclusively) based onmedicinal reasons, is corroborated by unequivocal analytical data allowing the estimation of the prevalence and extent of misuse in professional sports. Such data are vital to support decision-making processes, particularly regarding the ban on drugs in sport. Due to the growing body of evidence (black market products and athlete statements) concerning its misuse in sport, adequate test methods for the reliable identification of Mildronate are required, especially since the substance has been added to the 2015 World Anti-Doping Agency (WADA) monitoring program.
In the present study, two approaches were established using an in-house synthesized labelled internal standard (Mildronate-D3). One aimed at the implementation of the analyte into routine doping control screening methods to enable its monitoring at the lowest possible additional workload for the laboratory, and another that is appropriate for the peculiar specifics of the analyte, allowing the unequivocal confirmation of findings using hydrophilic interaction liquid chromatography-high resolution/high accuracy mass spectrometry (HILIC-HRMS). Here, according to applicable regulations in sports drug testing, a full qualitative validation was conducted. The assay demonstrated good specificity, robustness (rRT=0.3%), precision (intra-day: 7.0–8.4%; inter-day: 9.9–12.9%), excellent linearity (R>0.99) and an adequate lower limit of detection (<10 ng/mL).

Original document

Parameters

Science
Research / Study
Date
5 April 2015
People
Dib, Josef
Geyer, Hans
Görgens, Christian
Guddat, Sven
Schänzer, Wilhelm
Thevis, Mario
Country
Germany
Language
English
Other organisations
Deutsche Sporthochschule Köln (DSHS) - German Sport University Cologne
European Monitoring Centre for Drugs and Drug Addiction (EMCDDA)
Institut für Biochemie, Zentrum für Präventive Dopingforschung (ZePräDo) - Institute of Biochemistry, Centre for Preventive Doping Research
Laboratories
Cologne, Germany: Institute of Biochemistry - German Sport University Cologne
Analytical aspects
Mass spectrometry analysis
Testing method development
Doping classes
S4. Hormone And Metabolic Modulators
Substances
Meldonium
Document category
Scientific article
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Pdf file
Date generated
30 March 2016
Date of last modification
7 September 2020
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