Literature DB >> 9848516

Isoflavone content of infant formulas and the metabolic fate of these phytoestrogens in early life.

K D Setchell1, L Zimmer-Nechemias, J Cai, J E Heubi.   

Abstract

Soy-based infant formulas have been in use for >30 y. These formulas are manufactured from soy protein isolates and contain significant amounts of phytoestrogens of the isoflavone class. As determined by HPLC, the isoflavone compositions of commercially available formulas are similar qualitatively and quantitatively and are consistent with the isoflavone composition of soy protein isolates. Genistein, found predominantly in the form of glycosidic conjugates, accounts for >65% of the isoflavones in soy-based formulas. Total isoflavone concentrations of soy-based formulas prepared for infant feeding range from 32 to 47 mg/L, whereas isoflavone concentrations in human breast milk are only 5.6 +/- 4.4 microg/L (mean +/- SD, n = 9). Infants fed soy-based formulas are therefore exposed to 22-45 mg isoflavones/d (6-11 mg x kg body wt(-1) x d(-1)), whereas the intake of these phytoestrogens from human milk is negligible (<0.01 mg/d). The metabolic fate of isoflavones from soy-based infant formula is described. Plasma isoflavone concentrations reported previously for 4-mo-old infants fed soy-based formula were 654-1775 microg/L (mean: 979.7 microg/L: Lancet 1997:350;23-7), significantly higher than plasma concentrations of infants fed either cow-milk formula (mean +/- SD: 9.4 +/- 1.2 microg/L) or human breast milk (4.7 +/- 1.3 microg/L). The high steady state plasma concentration of isoflavones in infants fed soy-based formula is explained by reduced intestinal biotransformation, as evidenced by low or undetectable concentrations of equol and other metabolites, and is maintained by constant daily exposure from frequent feeding. Isoflavones circulate at concentrations that are 13,000-22,000-fold higher than plasma estradiol concentrations in early life. Exposure to these phytoestrogens early in life may have long-term health benefits for hormone-dependent diseases.

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Year:  1998        PMID: 9848516     DOI: 10.1093/ajcn/68.6.1453S

Source DB:  PubMed          Journal:  Am J Clin Nutr        ISSN: 0002-9165            Impact factor:   7.045


  62 in total

1.  Rapid signaling actions of environmental estrogens in developing granule cell neurons are mediated by estrogen receptor ß.

Authors:  Hoa H Le; Scott M Belcher
Journal:  Endocrinology       Date:  2010-10-06       Impact factor: 4.736

Review 2.  Equol: history, chemistry, and formation.

Authors:  Kenneth D R Setchell; Carlo Clerici
Journal:  J Nutr       Date:  2010-06-02       Impact factor: 4.798

Review 3.  Epigenetic effects of endocrine-disrupting chemicals on female reproduction: an ovarian perspective.

Authors:  Aparna Mahakali Zama; Mehmet Uzumcu
Journal:  Front Neuroendocrinol       Date:  2010-07-04       Impact factor: 8.606

4.  Soy isoflavone phase II metabolism differs between rodents and humans: implications for the effect on breast cancer risk.

Authors:  Kenneth D R Setchell; Nadine M Brown; Xueheng Zhao; Stephanie L Lindley; James E Heubi; Eileen C King; Mark J Messina
Journal:  Am J Clin Nutr       Date:  2011-09-28       Impact factor: 7.045

5.  Altered carcinogenesis and proteome in mammary glands of rats after prepubertal exposures to the hormonally active chemicals bisphenol a and genistein.

Authors:  Angela M Betancourt; Jun Wang; Sarah Jenkins; Jim Mobley; Jose Russo; Coral A Lamartiniere
Journal:  J Nutr       Date:  2012-05-30       Impact factor: 4.798

Review 6.  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

7.  Soy-based diet exacerbates seizures in mouse models of neurological disease.

Authors:  Cara J Westmark; Pamela R Westmark; James S Malter
Journal:  J Alzheimers Dis       Date:  2013       Impact factor: 4.472

8.  Coexposure to phytoestrogens and bisphenol a mimics estrogenic effects in an additive manner.

Authors:  Anne Katchy; Caroline Pinto; Philip Jonsson; Trang Nguyen-Vu; Marchela Pandelova; Anne Riu; Karl-Werner Schramm; Daniel Samarov; Jan-Åke Gustafsson; Maria Bondesson; Cecilia Williams
Journal:  Toxicol Sci       Date:  2013-11-27       Impact factor: 4.849

9.  Synergistic effect of genistein and BCNU on growth inhibition and cytotoxicity of glioblastoma cells.

Authors:  Sami Khoshyomn; David Nathan; Gregory C Manske; Turner M Osler; Paul L Penar
Journal:  J Neurooncol       Date:  2002-05       Impact factor: 4.130

10.  Isoflavones in urine, saliva, and blood of infants: data from a pilot study on the estrogenic activity of soy formula.

Authors:  Yang Cao; Antonia M Calafat; Daniel R Doerge; David M Umbach; Judy C Bernbaum; Nathan C Twaddle; Xiaoyun Ye; Walter J Rogan
Journal:  J Expo Sci Environ Epidemiol       Date:  2008-07-30       Impact factor: 5.563

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