1980Journal of Mass SpectrometryRequires access

Study of theophylline metabolism in premature human newborns using stable isotope labelling

J. L. Brazier, B Ribon, M. Désage, B Salle

Open publisher page 35 citations

Abstract

A new metabolic pathway of theophylline has been investigated in premature human newborns using the ion cluster technique of stable isotope labelling combined with gas chromatography mass spectrometry. Labelled caffeine, paraxanthine and theobromine have been found in plasma and urine of two preterm newborns receiving [1,3-15N], [2-13C] theophylline for the treatment of primitive apneas. Theophylline is converted to caffeine by N-7 methylation. In adults, the inverse process exists wherein caffeine is demethylated to give theophylline.

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What this paper is about

A new metabolic pathway of theophylline has been investigated in premature human newborns using the ion cluster technique of stable isotope labelling combined with gas chromatography mass spectrometry. Labelled caffeine, paraxanthine and theobromine have been found in plasma and urine of two preterm newborns receiving [1,3-15N], [2-13C] theophylline for the treatment of primitive apneas. Theophylline is converted to caffeine by N-7 methylation. In adults, the inverse process exists wherein caffeine is demethylated to give theophylline.

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Available abstract

A new metabolic pathway of theophylline has been investigated in premature human newborns using the ion cluster technique of stable isotope labelling combined with gas chromatography mass spectrometry. Labelled caffeine, paraxanthine and theobromine have been found in plasma and urine of two preterm newborns receiving [1,3-15N], [2-13C] theophylline for the treatment of primitive apneas. Theophylline is converted to caffeine by N-7 methylation. In adults, the inverse process exists wherein caffeine is demethylated to give theophylline.

Key concepts: Theophylline, Theobromine, Paraxanthine, Caffeine, Chemistry, Urine, Isotopomers, Labelling

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