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Research ArticleArticle

Identification of New Derivatives of Sinigrin and Glucotropaeolin Produced by the Human Digestive Microflora Using 1H NMR Spectroscopy Analysis of in Vitro Incubations

Bruno Combourieu, Lila Elfoul, Anne-Marie Delort and Sylvie Rabot
Drug Metabolism and Disposition November 2001, 29 (11) 1440-1445;
Bruno Combourieu
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Lila Elfoul
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Anne-Marie Delort
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Sylvie Rabot
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Abstract

One- and two-dimensional 1H NMR spectroscopy were used to study the biotransformation of two dietary glucosinolates, sinigrin (SIN), and glucotropaeolin (GTL) by the human digestive microflora in vitro. The molecular structures of the new metabolites issued from the aglycone moiety of the glucosinolate were identified, and the modulation of carbon metabolism was studied by quantifying bacterial metabolites issued from the xenobiotic incubation in the presence or absence of a source of free glucose. Unambiguously and for the first time, it was shown that SIN and GTL were transformed quantitatively into allylamine and benzylamine, respectively. The comparison of the kinetics of transformation of SIN and GTL with and without glucose clearly showed that the presence of glucose did not modify either the nature of the metabolites or the rate of transformation of the glucosinolates (complete degradation within 30 h). The main end products of the glucose moiety of glucosinolates were characteristic of anaerobic carbon metabolism in the digestive tract (acetate, lactate, ethanol, propionate, formate, and butyrate) and similar to those released from free glucose. This work represents the first application of 1H NMR spectroscopy to the study of xenobiotic metabolism by the human digestive microflora, demonstrating allyl- and benzylamine production from glucosinolates. Whether these amines are produced in vivo from dietary glucosinolates remains to be established. This would reduce the availability of other glucosinolate metabolites, notably cancer-protective isothiocyanates.

Footnotes

  • This research was supported by the European Community under the program FAIR CT97 3029 entitled Effects of Food-Borne Glucosinolates on Human Health and by a fellowship awarded to one of the authors (L.E.) by the French Ministry of Education, Research, and Technology.

  • Abbreviations used are::
    1D
    one dimensional
    2D
    two dimensional
    SIN
    sinigrin
    GTL
    glucotropaeolin
    HPLC
    high-pressure liquid chromatography
    TSPd4
    3-(trimethyl-silyl)-1-propanesulfonic acid-tetra deuterated
    TOCSY
    total correlation spectroscopy
    GC-MS
    gas chromatography-mass spectrometry
    gCOSY
    gradients-correlation spectroscopy
    • Received March 19, 2001.
    • Accepted July 23, 2001.
  • The American Society for Pharmacology and Experimental Therapeutics
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Drug Metabolism and Disposition: 29 (11)
Drug Metabolism and Disposition
Vol. 29, Issue 11
1 Nov 2001
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Research ArticleArticle

Identification of New Derivatives of Sinigrin and Glucotropaeolin Produced by the Human Digestive Microflora Using 1H NMR Spectroscopy Analysis of in Vitro Incubations

Bruno Combourieu, Lila Elfoul, Anne-Marie Delort and Sylvie Rabot
Drug Metabolism and Disposition November 1, 2001, 29 (11) 1440-1445;

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Research ArticleArticle

Identification of New Derivatives of Sinigrin and Glucotropaeolin Produced by the Human Digestive Microflora Using 1H NMR Spectroscopy Analysis of in Vitro Incubations

Bruno Combourieu, Lila Elfoul, Anne-Marie Delort and Sylvie Rabot
Drug Metabolism and Disposition November 1, 2001, 29 (11) 1440-1445;
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