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Current Nutrition & Food Science

Editor-in-Chief

ISSN (Print): 1573-4013
ISSN (Online): 2212-3881

Research Article

Relative Validity and Repeatability of a Zinc-FFQ for Estimating Intakes of Iron, Copper and Selenium in Saudi Adults

Author(s): Hadeil M. Alsufiani*, Salwa A. Albar, Aishah D. Al-Shehri, Zain A. Al-Mufti, Rahaf S. Aldahri and Ulfat M. Omar

Volume 17, Issue 2, 2021

Published on: 23 June, 2020

Page: [238 - 244] Pages: 7

DOI: 10.2174/1573401316999200623172118

Open Access Journals Promotions 2
Abstract

Background: In Saudi Arabia, few studies have addressed iron, selenium and copper intake and status. Most studies on iron have focused on iron deficiency anemia rather than the intake of iron.

Objective: To assess the relative validity and repeatability of a Zinc-food Frequency Questionnaire (FFQ) for estimating the intakes of iron, copper and selenium in Saudi adults.

Methods: Ninety-seven Saudi adults participated in this study. All participants completed the FFQ1 and a three-days (3d) Food Record (FR) to assess validity. After one month, the FFQ was administered again (FFQ2) to assess the repeatability.

Results: Mean intakes of iron, copper and selenium estimated by FFQ1 were significantly higher than those from the 3d FR. Estimated intakes of iron and selenium by both methods were significantly correlated. The Bland-Altman analysis showed that the difference in iron intakes, as measured by the two methods, was similar across the range of intakes while the difference in copper and selenium intakes increased with an increase in the mean intake. No detectable differences were observed between FFQ1 and FFQ2 in estimating iron, copper and selenium intakes. For all nutrients, the intakes from both FFQs were highly correlated.

Conclusion: The Zinc-FFQ showed reasonable relative validity and repeatability for estimating other micronutrients, such as iron, copper and selenium.

Keywords: FFQ, iron, micronutrients intake, relative validity, repeatability, Saudi adults.

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[1]
Lieu PT, Heiskala M, Peterson PA, et al. The roles of iron in health and disease. Mol Aspects Med 2001; 22(1-2): 1-87.
[http://dx.doi.org/10.1016/S0098-2997(00)00006-6] [PMID: 11207374]
[2]
Djoko KY, Ong CL, Walker MJ, et al. The role of copper and zinc toxicity in innate immune defense against bacterial pathogens. J Biol Chem 2015; 290(31): 18954-61.
[http://dx.doi.org/10.1074/jbc.R115.647099] [PMID: 26055706]
[3]
Al-Numair K. Copper and zinc status in healthy volunteers living in Saudi Arabia. J Med Sci 2006; 6: 519-27.
[http://dx.doi.org/10.3923/jms.2006.519.527]
[4]
Hordyjewska A, Popiołek Ł, Kocot J. The many “faces” of copper in medicine and treatment. Biometals 2014; 27(4): 611-21.
[http://dx.doi.org/10.1007/s10534-014-9736-5] [PMID: 24748564]
[5]
Stoffaneller R, Morse NL. A review of dietary selenium intake and selenium status in Europe and the Middle East. Nutrients 2015; 7(3): 1494-537.
[http://dx.doi.org/10.3390/nu7031494] [PMID: 25734564]
[6]
Donsante A, Tang J, Godwin SC, et al. Differences in ATP7A gene expression underlie intrafamilial variability in Menkes disease/occipital horn syndrome. J Med Genet 2007; 44(8): 492-7.
[http://dx.doi.org/10.1136/jmg.2007.050013] [PMID: 17496194]
[7]
Al-Assaf A. Anemia and iron intake of adult Saudis in Riyadh City-Saudi Arabia. Pak J Nutr 2007; 6(4): 355-8.
[http://dx.doi.org/10.3923/pjn.2007.355.358]
[8]
Alfadhli E. Macronutrients imbalance and micronutrient deficiencies among healthy Saudi physicians in Al Madina, Saudi Arabia. Saudi J Med Med Sci 2016; 4(3): 192-6.
[9]
Al-Othman AM, Al-Othman ZA, El-Desoky GE, et al. Daily intake of selenium and concentrations in blood of residents of Riyadh City, Saudi Arabia. Environ Geochem Health 2012; 34(4): 417-31.
[http://dx.doi.org/10.1007/s10653-011-9448-5] [PMID: 22270491]
[10]
Al-Ahmary KM. Selenium content in selected foods from the Saudi Arabia market and estimation of the daily intake. Arab J Chem 2009; 2(2): 95-9.
[http://dx.doi.org/10.1016/j.arabjc.2009.10.004]
[11]
Haftenberger M, Heuer T, Heidemann C, et al. Relative validation of a food frequency questionnaire for national health and nutrition monitoring. Nutr J 2010; 9: 36.
[http://dx.doi.org/10.1186/1475-2891-9-36] [PMID: 20840739]
[12]
Cade J, Thompson R, Burley V, et al. Development, validation and utilisation of food-frequency questionnaires-a review. Public Health Nutr 2002; 5(4): 567-87.
[http://dx.doi.org/10.1079/PHN2001318] [PMID: 12186666]
[13]
Alsufiani HM, Yamani F, Kumosani TA, et al. The relative validity and repeatability of an FFQ for estimating intake of zinc and its absorption modifiers in young and older Saudi adults. Public Health Nutr 2015; 18(6): 968-76.
[http://dx.doi.org/10.1017/S1368980014001517] [PMID: 25111449]
[14]
Musaiger A. Food composition Tables for Arab Gulf Countries (GULFOODS). Manama, Bahrain: Arab Center for Nutrition 2006.
[15]
Agency FS. McCance and Widdowson’s The Composition of Foods 6th ed Royal Socienty of Chemistry UK. 2002.
[16]
Lee R, Nieman D. Measuring Diet Nutritional Assesment 5th Ed McGraw Hill NY. 2010.
[17]
Barrett JS, Gibson PR. Development and validation of a comprehensive semi-quantitative food frequency questionnaire that includes FODMAP intake and glycemic index. J Am Diet Assoc 2010; 110(10): 1469-76.
[http://dx.doi.org/10.1016/j.jada.2010.07.011] [PMID: 20869485]
[18]
Lin PD, Bromage S, Mostofa MG, et al. Validation of a dish-based semiquantitative food questionnaire in rural Bangladesh. Nutrients 2017; 9(1): 49.
[http://dx.doi.org/10.3390/nu9010049] [PMID: 28075369]
[19]
Barrat E, Aubineau N, Maillot M, et al. Repeatability and relative validity of a quantitative food-frequency questionnaire among French adults. Food Nutr Res 2012; 56: 56.
[http://dx.doi.org/10.3402/fnr.v56i0.18472] [PMID: 23118710]
[20]
Tang Y, Liu Y, Xu L, et al. Validity and reproducibility of a revised semi-quantitative food frequency questionnaire (SQFFQ) for women of age-group 12-44 years in Chengdu. J Health Popul Nutr 2015; 33(1): 50-9.
[PMID: 25995721]
[21]
Sauvageot N, Alkerwi A, Albert A, et al. Use of food frequency questionnaire to assess relationships between dietary habits and cardiovascular risk factors in NESCAV study: validation with biomarkers. Nutr J 2013; 12(1): 143.
[http://dx.doi.org/10.1186/1475-2891-12-143] [PMID: 24195492]
[22]
Pakseresht M, Sharma S. Validation of a culturally appropriate quantitative food frequency questionnaire for Inuvialuit population in the Northwest Territories, Canada. J Hum Nutr Diet 2010; 23(Suppl. 1): 75-82.
[http://dx.doi.org/10.1111/j.1365-277X.2010.01105.x] [PMID: 21158965]
[23]
Segovia-Siapco G, Singh P, Jaceldo-Siegl K, et al. Validation of a food-frequency questionnaire for measurement of nutrient intake in a dietary intervention study. Public Health Nutr 2007; 10(2): 177-84.
[http://dx.doi.org/10.1017/S1368980007226047] [PMID: 17261227]
[24]
Jia X, Craig LC, Aucott LS, et al. Repeatability and validity of a food frequency questionnaire in free-living older people in relation to cognitive function. J Nutr Health Aging 2008; 12(10): 735-41.
[PMID: 19043649]
[25]
Heath AL, Skeaff CM, Gibson RS. The relative validity of a computerized food frequency questionnaire for estimating intake of dietary iron and its absorption modifiers. Eur J Clin Nutr 2000; 54(7): 592-9.
[http://dx.doi.org/10.1038/sj.ejcn.1601063] [PMID: 10918471]
[26]
Na YJ, Lee SH. Development and validation of a quantitative food frequency questionnaire to assess nutritional status in Korean adults. Nutr Res Pract 2012; 6(5): 444-50.
[http://dx.doi.org/10.4162/nrp.2012.6.5.444] [PMID: 23198024]
[27]
Głąbska D, Guzek D, Ślązak J, et al. Assessing the validity and reproducibility of an iron dietary intake questionnaire conducted in a group of young Polish women. Nutrients 2017; 9(3)E199
[http://dx.doi.org/10.3390/nu9030199] [PMID: 28264423]
[28]
Sam CH, Skeaff S, Skidmore PM. A comprehensive FFQ developed for use in New Zealand adults: reliability and validity for nutrient intakes. Public Health Nutr 2014; 17(2): 287-96.
[http://dx.doi.org/10.1017/S1368980012005058] [PMID: 23199788]
[29]
Malekahmadi M, Naeini AA, Shab-Bidar S, et al. Development, validity, and reliability of a food frequency questionnaire for antioxidants in elderly Iranian people. J Res Med Sci 2016; 21: 14.
[http://dx.doi.org/10.4103/1735-1995.178753] [PMID: 27904560]
[30]
Cade JE, Warthon-Medina M, Albar S, et al. DIET@NET consortium. Best Practice Guidelines for dietary assessment in health research. BMC Med 2017; 15(1): 202.
[http://dx.doi.org/10.1186/s12916-017-0962-x] [PMID: 29137630]

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