Ultra-processed food consumption and exposure to phthalates and bisphenols in the US National Health and Nutrition Examination Survey, 2013-2014

被引:210
作者
Buckley, Jessie P. [1 ,2 ]
Kim, Hyunju [3 ]
Wong, Eugenia [2 ]
Rebholz, Casey M. [2 ]
机构
[1] Johns Hopkins Bloomberg Sch Publ Hlth, Dept Environm Hlth & Engn, 615 N Wolfe St, Baltimore, MD 21205 USA
[2] Johns Hopkins Bloomberg Sch Publ Hlth, Dept Epidemiol, Baltimore, MD USA
[3] Johns Hopkins Bloomberg Sch Publ Hlth, Dept Int Hlth, Ctr Human Nutr, Baltimore, MD USA
基金
美国国家卫生研究院;
关键词
Phthalates; Bisphenol A; Processed food; Exposure assessment; Endocrine disruptors; DI-2-ETHYLHEXYLPHTHALATE REPLACEMENTS; URINARY CONCENTRATIONS; PRENATAL PHTHALATE; METABOLITES; CHILDREN; QUANTIFICATION; CLASSIFICATION; ASSOCIATIONS; ADOLESCENTS; PREDICTORS;
D O I
10.1016/j.envint.2019.105057
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Background: Ultra-processed food has low nutritional quality, is associated with development of chronic diseases, and may increase exposure to chemicals used in food packaging and production. Objectives: To assess associations of ultra-processed food consumption with exposure to phthalates and bisphenols, including newer replacements, in the general U.S. population. Methods: Among 2212 National Health and Nutrition Examination Survey (NHANES) 2013-2014 participants (>= 6 years), we classified items reported in a 24-h dietary recall according to the NOVA food processing classification system and calculated energy intake from ultra-processed food. Urinary concentrations of mono-benzyl (MBzP), mono-(3-carboxypropyl) (MCPP), mono-(carboxyisononyl) (MCNP), mono-(carboxyisoctyl) (MCOP), and four metabolites of di(2-ethylhexyl) (XDEHP) phthalates and bisphenols A, F, and S were measured in spot urine samples. We estimated percent changes in natural log creatinine-standardized concentrations per 10% higher energy from ultra-processed food in covariate-adjusted multivariable linear regression models. We examined effect measure modification by age group, race/ethnicity, and poverty:income ratio and assessed associations with minimally processed food intake. Results: In adjusted models, higher energy from ultra-processed food was associated with higher urinary concentrations of MCPP, MCNP, and MCOP but not MBzP, XDEHP, or bisphenols. Each 10% higher energy from ultra-processed food was associated with 8.0% (95% CI: 5.6%, 10.3%) higher urinary MCOP concentrations, with a stronger association among children than adolescents or adults. Ultra-processed sandwiches/hamburgers, French fries/other potato products, and ice cream/pops were associated with higher concentrations of multiple chemicals. Higher energy from minimally processed food was associated with lower concentrations of MCPP, MCNP, MCOP, and bisphenols A and F. Discussion: Ultra-processed food consumption may increase exposure to currently used phthalates. Additional research is needed to determine whether minimally processed food diets or changes in food production practices can reduce phthalate and bisphenol exposures and related health effects, particularly among children who are more vulnerable to toxicants and tend to consume more ultra-processed food than adults.
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页数:10
相关论文
共 65 条
[1]  
[Anonymous], 2014, CHRON HAZ ADV PAN PH
[2]  
[Anonymous], 2017, USDA National Nutrient Database for Standard Reference
[3]   Association of Exposure to Di-2-Ethylhexylphthalate Replacements With Increased Insulin Resistance in Adolescents From NHANES 2009-2012 [J].
Attina, Teresa M. ;
Trasande, Leonardo .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2015, 100 (07) :2640-2650
[4]   Urinary creatinine concentrations in the US population: Implications for urinary biologic monitoring measurements [J].
Barr, DB ;
Wilder, LC ;
Caudill, SP ;
Gonzalez, AJ ;
Needham, LL ;
Pirkle, JL .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2005, 113 (02) :192-200
[5]   The USDA automated multiple-pass method accurately estimates group total energy and nutrient intake [J].
Blanton, Cynthia A. ;
Moshfegh, Alanna J. ;
Baer, David J. ;
Kretsch, Mary J. .
JOURNAL OF NUTRITION, 2006, 136 (10) :2594-2599
[6]   Prenatal phthalate, triclosan, and bisphenol A exposures and child visual-spatial abilities [J].
Braun, Joseph M. ;
Bellinger, David C. ;
Hauser, Russ ;
Wright, Robert O. ;
Chen, Aimin ;
Calafat, Antonia M. ;
Yolton, Kimberly ;
Lanphear, Bruce P. .
NEUROTOXICOLOGY, 2017, 58 :75-83
[7]   Prenatal Phthalate Exposures and Body Mass Index Among 4-to 7-Year-old Children: A Pooled Analysis [J].
Buckley, Jessie P. ;
Engel, Stephanie M. ;
Braun, Joseph M. ;
Whyatt, Robin M. ;
Daniels, Julie L. ;
Mendez, Michelle A. ;
Richardson, David B. ;
Xu, Yingying ;
Calafat, Antonia M. ;
Wolff, Mary S. ;
Lanphear, Bruce P. ;
Herring, Amy H. ;
Rundle, Andrew G. .
EPIDEMIOLOGY, 2016, 27 (03) :449-458
[8]   Genotoxic and endocrine activities of bis(hydroxyphenyl)methane (bisphenol F) and its derivatives in the HepG2 cell line [J].
Cabaton, Nicolas ;
Dumont, Coralie ;
Severin, Isabelle ;
Perdu, Elisabeth ;
Zalko, Daniel ;
Cherkaoui-Malki, Mustapha ;
Chagnon, Marie-Christine .
TOXICOLOGY, 2009, 255 (1-2) :15-24
[9]   Optimal Exposure Biomarkers for Nonpersistent Chemicals in Environmental Epidemiology [J].
Calafat, Antonia M. ;
Longnecker, Matthew P. ;
Koch, Holger M. ;
Swan, Shanna H. ;
Hauser, Russ ;
Goldman, Lynn R. ;
Lanphear, Bruce P. ;
Rudel, Ruthann A. ;
Engel, Stephanie M. ;
Teitelbaum, Susan L. ;
Whyatt, Robin M. ;
Wolff, Mary S. .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2015, 123 (07) :A166-A168
[10]   Canned Soup Consumption and Urinary Bisphenol A: A Randomized Crossover Trial [J].
Carwile, Jenny L. ;
Ye, Xiaoyun ;
Zhou, Xiaoliu ;
Calafat, Antonia M. ;
Michels, Karin B. .
JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 2011, 306 (20) :2218-2220