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Research ArticleArticle

Absorption, Distribution, and Biliary Excretion of Cafestol, a Potent Cholesterol-Elevating Compound in Unfiltered Coffees, in Mice

S. T. J. van Cruchten, D. R. de Waart, C. Kunne, G. J. E. J. Hooiveld, M. V. Boekschoten, M. B. Katan, R. P. J. Oude Elferink and R. F. Witkamp
Drug Metabolism and Disposition April 2010, 38 (4) 635-640; DOI: https://doi.org/10.1124/dmd.109.030213
S. T. J. van Cruchten
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D. R. de Waart
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C. Kunne
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G. J. E. J. Hooiveld
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M. V. Boekschoten
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M. B. Katan
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R. P. J. Oude Elferink
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R. F. Witkamp
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Abstract

Cafestol is a diterpene present in unfiltered coffees. It is the most potent cholesterol-elevating compound present in the human diet. However, the precise mechanisms underlying this effect are still unclear. In contrast, cafestol is also known as a hepatoprotective compound, which is likely to be related to the induction of glutathione biosynthesis and conjugation. In the present study, we investigated whole-body distribution, biliary excretion, and portal bioavailability of cafestol in mice. First, dissection was used to study distribution. Five hours after an oral dose with 3H-labeled cafestol, most activity was found in small intestine, liver, and bile. These results were confirmed by quantitative whole-body autoradiography in a time course study, which also showed elimination of all radioactivity within 48 h after administration. Next, radiolabeled cafestol was dosed intravenously to bile duct-cannulated mice. Five hours after the dose 20% of the radioactivity was found in bile. Bile contained several metabolites but no parent compound. After intestinal administration of radioactive cafestol to portal vein-cannulated mice, cafestol was shown to be rapidly absorbed into the portal vein as the parent compound, a glucuronide, and an unidentified metabolite. From the presence of a glucuronide in bile that can be deconjugated by a bacterial enzyme and the prolonged absorption of parent compound from the gastrointestinal tract, we hypothesized that cafestol undergoes enterohepatic cycling. Together with our earlier observation that epoxidation of the furan ring occurs in liver, these findings merit further research on the process of accumulation of this coffee ingredient in liver and intestinal tract.

Footnotes

  • This work was supported by Top Institute Food and Nutrition.

  • The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript. The authors have declared that no competing interests exist.

  • Article, publication date, and citation information can be found at http://dmd.aspetjournals.org.

    doi:10.1124/dmd.109.030213.

  • ABBREVIATIONS:

    EpRE
    electrophile-response element
    Nrf
    nuclear factor erythroid 2-related factor
    HPLC
    high-performance liquid chromatography
    QWBA
    quantitative whole-body autoradiography.

    • Received September 14, 2009.
    • Accepted December 31, 2009.
  • Copyright © 2010 by The American Society for Pharmacology and Experimental Therapeutics
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Drug Metabolism and Disposition: 38 (4)
Drug Metabolism and Disposition
Vol. 38, Issue 4
1 Apr 2010
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Research ArticleArticle

Absorption, Distribution, and Biliary Excretion of Cafestol, a Potent Cholesterol-Elevating Compound in Unfiltered Coffees, in Mice

S. T. J. van Cruchten, D. R. de Waart, C. Kunne, G. J. E. J. Hooiveld, M. V. Boekschoten, M. B. Katan, R. P. J. Oude Elferink and R. F. Witkamp
Drug Metabolism and Disposition April 1, 2010, 38 (4) 635-640; DOI: https://doi.org/10.1124/dmd.109.030213

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Research ArticleArticle

Absorption, Distribution, and Biliary Excretion of Cafestol, a Potent Cholesterol-Elevating Compound in Unfiltered Coffees, in Mice

S. T. J. van Cruchten, D. R. de Waart, C. Kunne, G. J. E. J. Hooiveld, M. V. Boekschoten, M. B. Katan, R. P. J. Oude Elferink and R. F. Witkamp
Drug Metabolism and Disposition April 1, 2010, 38 (4) 635-640; DOI: https://doi.org/10.1124/dmd.109.030213
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