Literature DB >> 17333396

Commercial soy protein ingredients as isoflavone sources for functional foods.

Maria Inés Genovese1, Ana Cristina Lopes Barbosa, Márcia Da Silva Pinto, Franco M Lajolo.   

Abstract

The knowledge of the contents and profile of isoflavones present in soy protein ingredients, as well as the effect of industrial processing, is important for the development of functional foods rich in these compounds. The results obtained here showed that the total isoflavone content varied significantly among products. For defatted and whole soy flours the total isoflavone content ranged from 120 to 340 mg/100 g, for soy protein isolates from 88 to 164 mg/100 g, and for commercial textured soy proteins, from 66 to 183 mg/100 g (wet basis, expressed as aglycones). The highest isoflavone content was found for soy hypocotyl flours, from 542 to 851 mg/100 g. Compared to hypocotyl and whole and defatted flours, soy ingredients presented a decrease of malonylglycosides and deesterified beta-glycosides with a significant increase in the percentage of aglycones, mainly for soy fibers (65-76%). While defatting was shown to cause isoflavone concentration without altering conjugation, extrusion process caused destruction of isoflavones and a significant increase in the amount of acetylglycosides, but this effect was less intense for the concentrates. From the results obtained it can be concluded that differences in isoflavone concentration and profile may be related to oscillations in the isoflavone content present in the raw material and to the type of processing.

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Year:  2007        PMID: 17333396     DOI: 10.1007/s11130-007-0041-0

Source DB:  PubMed          Journal:  Plant Foods Hum Nutr        ISSN: 0921-9668            Impact factor:   4.124


  14 in total

Review 1.  Phytoestrogens: the biochemistry, physiology, and implications for human health of soy isoflavones.

Authors:  K D Setchell
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2.  Soybean isoflavones: effect of environment and variety on composition.

Authors:  A C Eldridge; W F Kwolek
Journal:  J Agric Food Chem       Date:  1983 Mar-Apr       Impact factor: 5.279

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Authors:  S M Mahungu; S Diaz-Mercado; J Li; M Schwenk; K Singletary; J Faller
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4.  Soy isoflavone aglycones are absorbed faster and in higher amounts than their glucosides in humans.

Authors:  T Izumi; M K Piskula; S Osawa; A Obata; K Tobe; M Saito; S Kataoka; Y Kubota; M Kikuchi
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5.  Bioavailability of pure isoflavones in healthy humans and analysis of commercial soy isoflavone supplements.

Authors:  K D Setchell; N M Brown; P Desai; L Zimmer-Nechemias; B E Wolfe; W T Brashear; A S Kirschner; A Cassidy; J E Heubi
Journal:  J Nutr       Date:  2001-04       Impact factor: 4.798

6.  Effect of storage temperature and water activity on the content and profile of isoflavones, antioxidant activity, and in vitro protein digestibility of soy protein isolates and defatted soy flours.

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9.  Chemical modification of isoflavones in soyfoods during cooking and processing.

Authors:  L Coward; M Smith; M Kirk; S Barnes
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10.  Soy isoflavone analysis: quality control and a new internal standard.

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