Literature DB >> 26317684

Species- and gender-dependent differences in the glucuronidation of a flavonoid glucoside and its aglycone determined using expressed UGT enzymes and microsomes.

Peimin Dai1,2, Feifei Luo2, Ying Wang1,2, Huangyu Jiang2, Liping Wang1,3, Guiyu Zhang2, Lijun Zhu2, Ming Hu2,4, Xinchun Wang3, Linlin Lu2, Zhongqiu Liu1,2.   

Abstract

Flavonoids occur naturally as glucosides and aglycones. Their common phenolic hydroxyl groups may trigger extensive UDP-glucuronosyltransferase (UGT)- catalysed metabolism. Unlike aglycones, glucosides contain glucose moieties. However, the influence of these glucose moieties on glucuronidation of glucosides and aglycones remains unclear. In this study, the flavonoid glucoside tilianin and its aglycone acacetin were used as model compounds. The glucuronidation characteristics and enzyme kinetics of tilianin and acacetin were compared using human UGT isoforms, liver microsomes and intestinal microsomes obtained from different animal species. Tilianin and acacetin were metabolized into different glucuronides, with UGT1A8 produced as the main isoform. Assessment of enzyme kinetics in UGT1A8, human liver microsomes and human intestinal microsomes revealed that compared with tilianin, acacetin displayed lower Km (0.6-, 0.7- and 0.6-fold, respectively), higher Vmax (20-, 60- and 230-fold, respectively) and higher clearance (30-, 80- and 300-fold, respectively). Furthermore, glucuronidation of acacetin and tilianin showed significant species- and gender-dependent differences. In conclusion, glucuronidation of flavonoid aglycones is faster than that of glucosides in the intestine and the liver. Understanding the metabolism and species- and gender-dependent differences between glucosides and aglycones is crucial for the development of drugs from flavonoids.
Copyright © 2015 John Wiley & Sons, Ltd.

Entities:  

Keywords:  enzyme kinetics; flavonoids; glucuronidation; in vitro incubation

Mesh:

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Year:  2015        PMID: 26317684     DOI: 10.1002/bdd.1989

Source DB:  PubMed          Journal:  Biopharm Drug Dispos        ISSN: 0142-2782            Impact factor:   1.627


  7 in total

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Journal:  Pharm Res       Date:  2017-04-18       Impact factor: 4.200

2.  UGT1A1 and UGT1A9 Are Responsible for Phase II Metabolism of Tectorigenin and Irigenin In Vitro.

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Journal:  Molecules       Date:  2022-06-26       Impact factor: 4.927

3.  Regioselective Glucuronidation of Diosmetin and Chrysoeriol by the Interplay of Glucuronidation and Transport in UGT1A9-Overexpressing HeLa Cells.

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Journal:  PLoS One       Date:  2016-11-10       Impact factor: 3.240

Review 4.  The role of metabolism (and the microbiome) in defining the clinical efficacy of dietary flavonoids.

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5.  Involvement of UDP-Glucuronosyltransferases and Sulfotransferases in the Excretion and Tissue Distribution of Resveratrol in Mice.

Authors:  Michaela Böhmdorfer; Akos Szakmary; Robert H Schiestl; Javier Vaquero; Juliane Riha; Stefan Brenner; Theresia Thalhammer; Thomas Szekeres; Walter Jäger
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6.  Investigation of the Factors Responsible for the Poor Oral Bioavailability of Acacetin in Rats: Physicochemical and Biopharmaceutical Aspects.

Authors:  Dong-Gyun Han; Eunju Cha; Jeongmin Joo; Ji Sun Hwang; Sanghyun Kim; Taeuk Park; Yoo-Seong Jeong; Han-Joo Maeng; Sang-Bum Kim; In-Soo Yoon
Journal:  Pharmaceutics       Date:  2021-01-28       Impact factor: 6.321

7.  Rapid intestinal glucuronidation and hepatic glucuronide recycling contributes significantly to the enterohepatic circulation of icaritin and its glucuronides in vivo.

Authors:  Yi Rong; Yifan Tu; Taijun Yin; Zhiyun Meng; Guifang Dou; Ming Hu
Journal:  Arch Toxicol       Date:  2020-09-11       Impact factor: 5.153

  7 in total

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