Effect of Coffee Combining Green Coffee Bean Constituents with Typical Roasting Products on the Nrf2/ARE Pathway in Vitro and in Vivo

This study investigated Nrf2-activating properties of a coffee blend combining raw coffee bean constituents with 5-O-caffeoylquinic acid (CGA) as a lead component with typical roasting products such as N-methylpyridinium (NMP). In cell culture (HT29) the respective coffee extract (CN-CE) increased n...

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Veröffentlicht in:Journal of agricultural and food chemistry 2012-09, Vol.60 (38), p.9631-9641
Hauptverfasser: Volz, Nadine, Boettler, Ute, Winkler, Swantje, Teller, Nicole, Schwarz, Christoph, Bakuradze, Tamara, Eisenbrand, Gerhard, Haupt, Larissa, Griffiths, Lyn R, Stiebitz, Herbert, Bytof, Gerhard, Lantz, Ingo, Lang, Roman, Hofmann, Thomas, Somoza, Veronika, Marko, Doris
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Sprache:eng
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Zusammenfassung:This study investigated Nrf2-activating properties of a coffee blend combining raw coffee bean constituents with 5-O-caffeoylquinic acid (CGA) as a lead component with typical roasting products such as N-methylpyridinium (NMP). In cell culture (HT29) the respective coffee extract (CN-CE) increased nuclear Nrf2 translocation and enhanced the transcription of ARE-dependent genes as exemplified for NAD(P)H:quinone oxidoreductase and glutathione-S-transferase (GST)A1, reflected in the protein level by an increase in GST enzyme activity. In a pilot human intervention study (29 healthy volunteers), daily consumption of 750 mL of CN-coffee for 4 weeks increased Nrf2 transcription in peripheral blood lymphocytes on average. However, the transcriptional response pattern of Nrf2/ARE-dependent genes showed substantial interindividual variations. The presence of SNPs in the Nrf2-promoter, reported recently, as well as the detection of GSTT1*0 (null) genotypes in the study collective strengthens the hypothesis that coffee acts as a modulator of Nrf2-dependent gene response in humans, but genetic polymorphisms play an important role in the individual response pattern.
ISSN:0021-8561
1520-5118
DOI:10.1021/jf302258u