Chili, but not turmeric, inhibits iron absorption in young women from an iron-fortified composite meal

Chili and turmeric are common spices in indigenous diets in tropical regions. Being rich in phenolic compounds, they would be expected to bind iron (Fe)3 in the intestine and inhibit Fe absorption in humans. Three experiments were conducted in healthy young women (n = 10/study) to assess the effect...

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Main Authors: Siriporn Tuntipopipat, Kunchit Judprasong, Christophe Zeder, Emorn Wasantwisut, Pattanee Winichagoon, Somsri Charoenkiatkul, Richard Hurrell, Thomas Walczyk
Other Authors: Mahidol University
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Published: 2018
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/23438
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spelling th-mahidol.234382018-08-20T14:23:10Z Chili, but not turmeric, inhibits iron absorption in young women from an iron-fortified composite meal Siriporn Tuntipopipat Kunchit Judprasong Christophe Zeder Emorn Wasantwisut Pattanee Winichagoon Somsri Charoenkiatkul Richard Hurrell Thomas Walczyk Mahidol University Institute of Food Science and Nutrition Medicine Nursing Chili and turmeric are common spices in indigenous diets in tropical regions. Being rich in phenolic compounds, they would be expected to bind iron (Fe)3 in the intestine and inhibit Fe absorption in humans. Three experiments were conducted in healthy young women (n = 10/study) to assess the effect of chili and turmeric on Fe absorption from a rice-based meal containing vegetables and iron fortified fish sauce in vivo. Iron absorption was determined by erythrocyte incorporation of stable isotope labels (57Fe/ 58Fe) using a randomized crossover design. Addition of freeze-dried chili (4.2 g dry powder, 25 mg polyphenols as gallic acid equivalents) reduced Fe absorption from the meal by 38% (6.0% with chili vs. 9.7% without chili, P = 0.0017). Turmeric (0.5 g dry powder, 50 mg polyphenols as gallic acid equivalents) did not inhibit iron absorption (P = 0.91). A possible effect of chili on gastric acid secretion was indirectly assessed by comparing Fe absorption from acid soluble [57Fe]-ferric pyrophosphate relative to water soluble [58Fe]-ferrous sulfate from the same meal in the presence and absence of chili. Chili did not enhance gastric acid secretion. Relative Fe bioavailability of ferric pyrophosphate was 5.4% in presence of chili and 6.4% in absence of chili (P = 0.47). Despite the much higher amount of phenolics in the turmeric meal, it did not affect iron absorption. We conclude that both phenol quality and quantity determine the inhibitory effect of phenolic compounds on iron absorption. © 2006 American Society for Nutrition. 2018-08-20T07:05:41Z 2018-08-20T07:05:41Z 2006-12-01 Article Journal of Nutrition. Vol.136, No.12 (2006), 2970-2974 15416100 00223166 2-s2.0-33845325176 https://repository.li.mahidol.ac.th/handle/123456789/23438 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=33845325176&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Medicine
Nursing
spellingShingle Medicine
Nursing
Siriporn Tuntipopipat
Kunchit Judprasong
Christophe Zeder
Emorn Wasantwisut
Pattanee Winichagoon
Somsri Charoenkiatkul
Richard Hurrell
Thomas Walczyk
Chili, but not turmeric, inhibits iron absorption in young women from an iron-fortified composite meal
description Chili and turmeric are common spices in indigenous diets in tropical regions. Being rich in phenolic compounds, they would be expected to bind iron (Fe)3 in the intestine and inhibit Fe absorption in humans. Three experiments were conducted in healthy young women (n = 10/study) to assess the effect of chili and turmeric on Fe absorption from a rice-based meal containing vegetables and iron fortified fish sauce in vivo. Iron absorption was determined by erythrocyte incorporation of stable isotope labels (57Fe/ 58Fe) using a randomized crossover design. Addition of freeze-dried chili (4.2 g dry powder, 25 mg polyphenols as gallic acid equivalents) reduced Fe absorption from the meal by 38% (6.0% with chili vs. 9.7% without chili, P = 0.0017). Turmeric (0.5 g dry powder, 50 mg polyphenols as gallic acid equivalents) did not inhibit iron absorption (P = 0.91). A possible effect of chili on gastric acid secretion was indirectly assessed by comparing Fe absorption from acid soluble [57Fe]-ferric pyrophosphate relative to water soluble [58Fe]-ferrous sulfate from the same meal in the presence and absence of chili. Chili did not enhance gastric acid secretion. Relative Fe bioavailability of ferric pyrophosphate was 5.4% in presence of chili and 6.4% in absence of chili (P = 0.47). Despite the much higher amount of phenolics in the turmeric meal, it did not affect iron absorption. We conclude that both phenol quality and quantity determine the inhibitory effect of phenolic compounds on iron absorption. © 2006 American Society for Nutrition.
author2 Mahidol University
author_facet Mahidol University
Siriporn Tuntipopipat
Kunchit Judprasong
Christophe Zeder
Emorn Wasantwisut
Pattanee Winichagoon
Somsri Charoenkiatkul
Richard Hurrell
Thomas Walczyk
format Article
author Siriporn Tuntipopipat
Kunchit Judprasong
Christophe Zeder
Emorn Wasantwisut
Pattanee Winichagoon
Somsri Charoenkiatkul
Richard Hurrell
Thomas Walczyk
author_sort Siriporn Tuntipopipat
title Chili, but not turmeric, inhibits iron absorption in young women from an iron-fortified composite meal
title_short Chili, but not turmeric, inhibits iron absorption in young women from an iron-fortified composite meal
title_full Chili, but not turmeric, inhibits iron absorption in young women from an iron-fortified composite meal
title_fullStr Chili, but not turmeric, inhibits iron absorption in young women from an iron-fortified composite meal
title_full_unstemmed Chili, but not turmeric, inhibits iron absorption in young women from an iron-fortified composite meal
title_sort chili, but not turmeric, inhibits iron absorption in young women from an iron-fortified composite meal
publishDate 2018
url https://repository.li.mahidol.ac.th/handle/123456789/23438
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