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Urinary profile of methylprednisolone and its metabolites after oral and topical administrations
Xavier Matabosch1, Oscar J Pozo, Núria Monfort
1Bioanalysis Research Group, IMIM (Institut Hospital del Mar d'Investigacions Mèdiques), Doctor Aiguader 88, 08003 Barcelona, Spain.
Abstract:
Methylprednisolone (MP) is prohibited in sports competitions when administered by systemic routes; however its use by topical administration is allowed. Therefore, analytical approaches to distinguish between these different administration pathways are required. A reporting level of 30ng/mL was established for this purpose. However, the suitability of that reporting level for MP is not known. In the present work, excretion profiles of MP and different metabolites after oral and topical administrations have been compared. A method for the quantification of MP and the qualitative detection of fifteen previously reported metabolites has been validated. The method involved an enzymatic hydrolysis, liquid-liquid extraction and analysis by liquid chromatography coupled to tandem mass spectrometry. The method was found to be linear, selective, precise and accurate. The high sensitivity (limit of detection 0.1ng/mL) and linear range (0.1-250ng/mL) achieved allowed for the quantification of MP at both the low concentrations present after topical administration and the high concentrations detected after oral intake. The method was applied to samples collected after oral (4 or 40mg) and topical administration (10mg of MP aceponate/day for 5 consecutive days) to healthy volunteers. After oral administration, MP and all metabolites were detected in urines collected up to at least 36h. Only MP and five metabolites were detected in samples obtained after topical treatment. As expected, concentrations of MP after topical administration were well below current reporting level (30ng/mL), however 3 out of 4 samples in range 8-24h after the low oral dose (4mg) were also below that concentration. Taking into account metabolites detected after both administration routes, metabolites 16β,17α,21-trihydroxy-6α-methylpregna-1,4-diene-3,11,20-trione (M8) and 17α,20α,21-trihydroxy-6α-methylpregna-1,4-diene-3,11-dione (M11) are best markers to differentiate between topical and oral administrations. Their signals after topical administration were lower than those obtained in the first 48h after all oral doses.
Insights
Distinguishing topical from systemic methylprednisolone (MP) is crucial for sports doping control. This study identifies key metabolites (M8 and M11) in urine, enabling accurate differentiation between administration routes for methylprednisolone detection.
Area of Science:
- Pharmacology and Toxicology
- Analytical Chemistry
- Sports Science
Background:
- Methylprednisolone (MP) is prohibited systemically but permitted topically in sports.
- Analytical methods are needed to differentiate between these administration routes.
- The current reporting level's suitability for MP is unconfirmed.
Purpose of the Study:
- To compare excretion profiles of MP and its metabolites after oral and topical administration.
- To validate a sensitive analytical method for MP and metabolite detection.
- To identify reliable biomarkers for differentiating MP administration routes.
Main Methods:
- Validated a method using enzymatic hydrolysis, liquid-liquid extraction, and LC-MS/MS.
- Quantified MP and qualitatively detected fifteen metabolites.
- Analyzed urine samples from healthy volunteers after oral (4/40mg) and topical (10mg MP aceponate/day for 5 days) administration.
Main Results:
- The validated method demonstrated linearity, selectivity, precision, and accuracy (LOD 0.1 ng/mL, linear range 0.1-250 ng/mL).
- Oral administration led to detection of MP and all metabolites up to 36h; topical administration detected only MP and five metabolites.
- Metabolites M8 and M11 were identified as the most reliable markers, with lower signals after topical than oral administration within 48h.
Conclusions:
- The developed LC-MS/MS method is suitable for quantifying MP and detecting metabolites across different concentrations.
- Metabolites M8 and M11 effectively differentiate between topical and systemic MP administration in urine.
- This aids in enforcing anti-doping regulations concerning methylprednisolone use.
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