Literature DB >> 12612182

Isoflavonoid and lignan phytoestrogens as dietary biomarkers.

Johanna W Lampe1.   

Abstract

Isoflavones and lignans are biologically active plant-food constituents that have potential chemopreventive properties. Quantitation of isoflavones and lignans in humans is necessary to establish the benefits and risks of exposure to these compounds in populations and to determine which components of a mixed diet contribute to the exposure. Isoflavones and lignans are metabolized by colonic bacteria to more biologically active metabolites; thus both the parent compounds and the metabolites are measured routinely. Isoflavonoids (genistein, daidzein, dihydrodaidzein, O-desmethylangolensin and equol) and lignans (enterolactone, enterodiol, matairesinol and secoisolariciresinol) can be quantified in various body fluids. Typically, high concentrations of isoflavonoids in urine and serum are associated with soy consumption, and high concentrations of lignans are associated primarily with intake of whole grains and other fiber-containing plant foods. Controlled feeding studies and nutritional epidemiologic studies demonstrate a linear dose response between dietary intake and urinary excretion of isoflavones. Lignan excretion is associated positively with dietary fiber intake as well as with diets that are on average higher in fiber and carbohydrate and lower in fat; thus lignans have also been proposed as a marker of healthier dietary patterns. The complex interactions between the colonic environment and the external and internal factors that modulate it contribute to significant variation in serum and urinary phytoestrogen levels among individuals. Understanding these sources of variation is important to be able to use these measures effectively as dietary biomarkers.

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Year:  2003        PMID: 12612182     DOI: 10.1093/jn/133.3.956S

Source DB:  PubMed          Journal:  J Nutr        ISSN: 0022-3166            Impact factor:   4.798


  46 in total

1.  Reduction in Ki-67 in benign breast tissue of high-risk women with the lignan secoisolariciresinol diglycoside.

Authors:  Carol J Fabian; Bruce F Kimler; Carola M Zalles; Jennifer R Klemp; Brian K Petroff; Qamar J Khan; Priyanka Sharma; Kenneth D R Setchell; Xueheng Zhao; Teresa A Phillips; Trina Metheny; Jennifer R Hughes; Hung-Wen Yeh; Karen A Johnson
Journal:  Cancer Prev Res (Phila)       Date:  2010-08-19

2.  Dietary phytoestrogen intake is associated with reduced colorectal cancer risk.

Authors:  Michelle Cotterchio; Beatrice A Boucher; Michael Manno; Steven Gallinger; Allan Okey; Patricia Harper
Journal:  J Nutr       Date:  2006-12       Impact factor: 4.798

Review 3.  NTP-CERHR expert panel report on the reproductive and developmental toxicity of genistein.

Authors:  Karl K Rozman; Jatinder Bhatia; Antonia M Calafat; Christina Chambers; Martine Culty; Ruth A Etzel; Jodi A Flaws; Deborah K Hansen; Patricia B Hoyer; Elizabeth H Jeffery; James S Kesner; Sue Marty; John A Thomas; David Umbach
Journal:  Birth Defects Res B Dev Reprod Toxicol       Date:  2006-12

Review 4.  Markers for nutrition studies: review of criteria for the evaluation of markers.

Authors:  Jan de Vries; Jean-Michel Antoine; Tomasz Burzykowski; Alessandro Chiodini; Mike Gibney; Gunter Kuhnle; Agnès Méheust; Loek Pijls; Ian Rowland
Journal:  Eur J Nutr       Date:  2013-08-17       Impact factor: 5.614

5.  Higher urinary lignan concentrations in women but not men are positively associated with shorter time to pregnancy.

Authors:  Sunni L Mumford; Rajeshwari Sundaram; Enrique F Schisterman; Anne M Sweeney; Dana Boyd Barr; Michael E Rybak; Jose M Maisog; Daniel L Parker; Christine M Pfeiffer; Germaine M Buck Louis
Journal:  J Nutr       Date:  2014-01-08       Impact factor: 4.798

6.  Bioconversion of pinoresinol into matairesinol by use of recombinant Escherichia coli.

Authors:  Han-Jung Kuo; Zhi-Yu Wei; Pei-Chun Lu; Pung-Ling Huang; Kung-Ta Lee
Journal:  Appl Environ Microbiol       Date:  2014-02-21       Impact factor: 4.792

7.  Urinary phytoestrogens and cancer, cardiovascular, and all-cause mortality in the continuous National Health and Nutrition Examination Survey.

Authors:  Michael K Reger; Terrell W Zollinger; Ziyue Liu; Josette Jones; Jianjun Zhang
Journal:  Eur J Nutr       Date:  2015-05-06       Impact factor: 5.614

8.  Variability in short-wavelength automated perimetry among peri- or postmenopausal women: a dependence on phyto-oestrogen consumption?

Authors:  Alvin Eisner; Shaban Demirel
Journal:  Acta Ophthalmol       Date:  2011-05       Impact factor: 3.761

9.  Intake of dietary phytoestrogen and indices of antioxidant and bone metabolism of pre- and post-menopausal Korean women.

Authors:  Jeong-Hee Jang; Ji-Young Yoon; Sung-Hee Cho
Journal:  Nutr Res Pract       Date:  2007-12-31       Impact factor: 1.926

10.  Urinary phytoestrogen excretion and prostate cancer risk: a nested case-control study in the Multiethnic Cohort.

Authors:  S-Y Park; L R Wilkens; A A Franke; L Le Marchand; K K Kakazu; M T Goodman; S P Murphy; B E Henderson; L N Kolonel
Journal:  Br J Cancer       Date:  2009-06-16       Impact factor: 7.640

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