Plasma metabolic profiling identifies elevated hippurate as a potential biomarker of methotrexate non-response in

Amar Kumar1, Mara L Becker2, Ryan S Funk3

  • 1Department of Physiology and Biophysics, University of Illinois, Chicago, IL 60612, USA.

Abstract

Insights

Plasma metabolomic profiling identified hippurate as a key biomarker for predicting methotrexate non-response in juvenile idiopathic arthritis (JIA). This finding may help personalize treatment strategies for JIA patients.

Area of Science:

  • * Biochemistry and Metabolomics
  • * Pediatric Rheumatology
  • * Pharmacogenomics

Background:

  • * Methotrexate (MTX) is the primary disease-modifying antirheumatic drug (DMARD) for juvenile idiopathic arthritis (JIA).
  • * MTX response is often delayed and variable, necessitating biologic DMARDs.
  • * Predictive biomarkers are needed for early, effective JIA treatment selection.

Purpose of the Study:

  • * To identify plasma metabolic biomarkers associated with MTX non-response in JIA.
  • * To utilize metabolomic profiling for guiding drug selection in JIA treatment.

Main Methods:

  • * Prospective observational study of 60 JIA patients initiating MTX therapy.
  • * Multi-platform UHPLC-MS/MS used for plasma metabolite profiling (902 metabolites).
  • * Statistical analyses included univariate analysis, enrichment analysis (ChemRich), metabolic network mapping (MetaMapp), and ROC curve analysis.

Main Results:

  • * 63 out of 902 pretreatment plasma metabolites significantly differed between MTX responders and non-responders.
  • * Six metabolite clusters, including indoles and xanthines, were significant.
  • * Increased plasma hippurate levels (AUC=0.781) were the most discriminating metabolite for MTX non-response, independently associated with non-response at 6 months.

Conclusions:

  • * Plasma metabolomic differences are associated with MTX response in JIA.
  • * Gut microbial-derived metabolites, such as hippurate and indoles, are implicated.
  • * Findings highlight the potential role of the gut microbiome in MTX treatment response for JIA.

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