Liquid Chromatographic Methods for Microsampling in Sports Drug Monitoring: Progress in DBS and VAMS
Zhang
The finding, in our words
The analysis indicates that dried blood spots and volumetric absorptive microsampling enable minimally invasive monitoring of prohibited substances, with volumetric absorptive microsampling offering improved quantitative reliability over traditional dried spots.
A paraphrase to the Library’s standard, never the abstract. The source is one link away and is always the authority.
This study compared four dried blood spot devices for glucocorticoid detection, finding that the Mitra VAMS device offered the best combination of analytical recovery and user usability, whilst the HemaXis DB10 showed the least bias compared to whole blood.
The authors found that a single microdose of recombinant EPO was detectable up to 72 hours using ITP and CP methods, though the Tasso microsampling device showed lower sensitivity than Mitra and Capitainer. Additionally, isotope ratio mass spectrometry successfully detected testosterone micro-dosing in all analysed samples, supported by serum testosterone levels.
The study compared five microsampling devices, including Mitra tips and Tasso-M20, for detecting 27 steroid esters in dried blood by LC-MS/MS, and found that methanol extraction with Girard's reagent P or T provided the best screening sensitivity with detection limits of 0.05 to 1.0 ng/mL, while methoxyamine derivatization was recommended for confirming boldenone and certain testosterone esters. The Tasso-M20 device produced chromatographic interference with methanol extraction that was only partially resolved by using mixed solvents, at the cost of lower recoveries.
A validated two-step LC-MS/MS protocol can identify 91 prohibited doping agents from a single dried blood spot collected on either cellulose cards or volumetric absorptive microsampling devices. This demonstrates robust multi-analyte screening from capillary blood, supporting decentralised anti-doping programmes where venous sampling is impractical.
This review highlights that microsampling techniques such as dried blood spots and volumetric absorptive microsampling offer superior alternatives to traditional sampling for the mass spectrometry detection of prohibited substances in anti-doping analysis. It provides guidance on selecting appropriate analytical methods and sample pretreatment strategies to ensure sensitive detection and reliable storage conditions.