(en) Cermak R, Wolffram S, « The potential of flavonoids to influence drug metabolism and pharmacokinetics by local gastrointestinal mechanisms », Curr. Drug Metab., vol. 7, no 7, , p. 729–44 (PMID17073577, DOI10.2174/138920006778520570, lire en ligne)
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(en) Wessely F, Moser GH, « Synthese und Konstitution des Skutellareins », Monatsh. Chem., vol. 56, no 1, , p. 97–105 (DOI10.1007/BF02716040, lire en ligne)
(en) Larget R, Lockhart B, Renard P, Largeron M, « A convenient extension of the Wessely-Moser rearrangement for the synthesis of substituted alkylaminoflavones as neuroprotective agents in vitro », Bioorg. Med. Chem. Lett., vol. 10, no 8, , p. 835–8 (PMID10782697, DOI10.1016/S0960-894X(00)00110-4, lire en ligne)
(en) Cermak R, Wolffram S, « The potential of flavonoids to influence drug metabolism and pharmacokinetics by local gastrointestinal mechanisms », Curr. Drug Metab., vol. 7, no 7, , p. 729–44 (PMID17073577, DOI10.2174/138920006778520570, lire en ligne)
(en) Cermak R, « Effect of dietary flavonoids on pathways involved in drug metabolism », Expert Opin Drug Metab Toxicol, vol. 4, no 1, , p. 17–35 (PMID18370856, DOI10.1517/17425255.4.1.17, lire en ligne)
(en) Hyejin Hyeon, Ho Bong Hyun, Sung Chun Kim et Boram Go, « Simultaneous Quantification Method of Flavonoids in Jeju Native Citrus from Different Harvest Times Using a High-Performance Liquid Chromatography–Diode Array Detector (HPLC–DAD) », Separations, vol. 10, no 11, , p. 567 (ISSN2297-8739, DOI10.3390/separations10110567, lire en ligne, consulté le )
(en) Zhaoxin Peng, Lizhi Song, Minghua Chen et Zeyang Liu, « Neofunctionalization of an OMT cluster dominates polymethoxyflavone biosynthesis associated with the domestication of citrus », Proceedings of the National Academy of Sciences, vol. 121, no 14, (ISSN0027-8424 et 1091-6490, DOI10.1073/pnas.2321615121, lire en ligne, consulté le )
(en) Rosa Toledo, María Tomás-Navarro, Jose Enrique Yuste et Pasquale Crupi, « An update on citrus polymethoxyflavones: chemistry, metabolic fate, and relevant bioactivities », European Food Research and Technology, (ISSN1438-2385, DOI10.1007/s00217-024-04529-5, lire en ligne, consulté le )
(en) Zarina Mushtaq, Mahwish Aslam, Muhammad Imran, Mohamed A. Abdelgawadet al., « Polymethoxyflavones: an updated review on pharmacological properties and underlying molecular mechanisms », International Journal of Food Properties, vol. 26, no 1, , p. 866–893 (ISSN1094-2912 et 1532-2386, DOI10.1080/10942912.2023.2189568, lire en ligne, consulté le )
(en) Rainer Cermak et Siegfried Wolffram, « The Potential of Flavonoids to Influence Drug Metabolism and Pharmacokinetics by Local Gastrointestinal Mechanisms », Current Drug Metabolism, vol. 7, no 7, , p. 729–744 (DOI10.2174/138920006778520570, lire en ligne, consulté le )
(en) Rosa Toledo, María Tomás-Navarro, Jose Enrique Yuste et Pasquale Crupi, « An update on citrus polymethoxyflavones: chemistry, metabolic fate, and relevant bioactivities », European Food Research and Technology, (ISSN1438-2385, DOI10.1007/s00217-024-04529-5, lire en ligne, consulté le )
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(en) Larget R, Lockhart B, Renard P, Largeron M, « A convenient extension of the Wessely-Moser rearrangement for the synthesis of substituted alkylaminoflavones as neuroprotective agents in vitro », Bioorg. Med. Chem. Lett., vol. 10, no 8, , p. 835–8 (PMID10782697, DOI10.1016/S0960-894X(00)00110-4, lire en ligne)
eurekaselect.com
(en) Rainer Cermak et Siegfried Wolffram, « The Potential of Flavonoids to Influence Drug Metabolism and Pharmacokinetics by Local Gastrointestinal Mechanisms », Current Drug Metabolism, vol. 7, no 7, , p. 729–744 (DOI10.2174/138920006778520570, lire en ligne, consulté le )
(en) Cermak R, « Effect of dietary flavonoids on pathways involved in drug metabolism », Expert Opin Drug Metab Toxicol, vol. 4, no 1, , p. 17–35 (PMID18370856, DOI10.1517/17425255.4.1.17, lire en ligne)
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(en) Hyejin Hyeon, Ho Bong Hyun, Sung Chun Kim et Boram Go, « Simultaneous Quantification Method of Flavonoids in Jeju Native Citrus from Different Harvest Times Using a High-Performance Liquid Chromatography–Diode Array Detector (HPLC–DAD) », Separations, vol. 10, no 11, , p. 567 (ISSN2297-8739, DOI10.3390/separations10110567, lire en ligne, consulté le )
(en) Zhaoxin Peng, Lizhi Song, Minghua Chen et Zeyang Liu, « Neofunctionalization of an OMT cluster dominates polymethoxyflavone biosynthesis associated with the domestication of citrus », Proceedings of the National Academy of Sciences, vol. 121, no 14, (ISSN0027-8424 et 1091-6490, DOI10.1073/pnas.2321615121, lire en ligne, consulté le )
(en) Rosa Toledo, María Tomás-Navarro, Jose Enrique Yuste et Pasquale Crupi, « An update on citrus polymethoxyflavones: chemistry, metabolic fate, and relevant bioactivities », European Food Research and Technology, (ISSN1438-2385, DOI10.1007/s00217-024-04529-5, lire en ligne, consulté le )
(en) Zarina Mushtaq, Mahwish Aslam, Muhammad Imran, Mohamed A. Abdelgawadet al., « Polymethoxyflavones: an updated review on pharmacological properties and underlying molecular mechanisms », International Journal of Food Properties, vol. 26, no 1, , p. 866–893 (ISSN1094-2912 et 1532-2386, DOI10.1080/10942912.2023.2189568, lire en ligne, consulté le )
mdpi.com
(en) Hyejin Hyeon, Ho Bong Hyun, Sung Chun Kim et Boram Go, « Simultaneous Quantification Method of Flavonoids in Jeju Native Citrus from Different Harvest Times Using a High-Performance Liquid Chromatography–Diode Array Detector (HPLC–DAD) », Separations, vol. 10, no 11, , p. 567 (ISSN2297-8739, DOI10.3390/separations10110567, lire en ligne, consulté le )
nature.com
(en) Mao Seoka, Gang Ma, Lancui Zhang, Masaki Yahata, Kazuki Yamawaki, Toshiyuki Kan & Masaya Kato, « Figure 1 | Scientific Reports / Expression and functional analysis of the nobiletin biosynthesis-related gene CitOMT in citrus fruit », Nature Scientific Reports, (lire en ligne, consulté le )
nih.gov
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(en) Larget R, Lockhart B, Renard P, Largeron M, « A convenient extension of the Wessely-Moser rearrangement for the synthesis of substituted alkylaminoflavones as neuroprotective agents in vitro », Bioorg. Med. Chem. Lett., vol. 10, no 8, , p. 835–8 (PMID10782697, DOI10.1016/S0960-894X(00)00110-4, lire en ligne)
(en) Cermak R, Wolffram S, « The potential of flavonoids to influence drug metabolism and pharmacokinetics by local gastrointestinal mechanisms », Curr. Drug Metab., vol. 7, no 7, , p. 729–44 (PMID17073577, DOI10.2174/138920006778520570, lire en ligne)
(en) Cermak R, « Effect of dietary flavonoids on pathways involved in drug metabolism », Expert Opin Drug Metab Toxicol, vol. 4, no 1, , p. 17–35 (PMID18370856, DOI10.1517/17425255.4.1.17, lire en ligne)
(en) Zhaoxin Peng, Lizhi Song, Minghua Chen et Zeyang Liu, « Neofunctionalization of an OMT cluster dominates polymethoxyflavone biosynthesis associated with the domestication of citrus », Proceedings of the National Academy of Sciences, vol. 121, no 14, (ISSN0027-8424 et 1091-6490, DOI10.1073/pnas.2321615121, lire en ligne, consulté le )
springerlink.com
(en) Wessely F, Moser GH, « Synthese und Konstitution des Skutellareins », Monatsh. Chem., vol. 56, no 1, , p. 97–105 (DOI10.1007/BF02716040, lire en ligne)
tandfonline.com
(en) Zarina Mushtaq, Mahwish Aslam, Muhammad Imran, Mohamed A. Abdelgawadet al., « Polymethoxyflavones: an updated review on pharmacological properties and underlying molecular mechanisms », International Journal of Food Properties, vol. 26, no 1, , p. 866–893 (ISSN1094-2912 et 1532-2386, DOI10.1080/10942912.2023.2189568, lire en ligne, consulté le )