6.
Di Ciaula A, Portincasa P
. Diet and Contaminants: Driving the Rise to Obesity Epidemics?. Curr Med Chem. 2017; 26(19):3471-3482.
DOI: 10.2174/0929867324666170518095736.
View
7.
Juul F, Vaidean G, Parekh N
. Ultra-processed Foods and Cardiovascular Diseases: Potential Mechanisms of Action. Adv Nutr. 2021; 12(5):1673-1680.
PMC: 8483964.
DOI: 10.1093/advances/nmab049.
View
8.
Baker P, Friel S
. Food systems transformations, ultra-processed food markets and the nutrition transition in Asia. Global Health. 2016; 12(1):80.
PMC: 5135831.
DOI: 10.1186/s12992-016-0223-3.
View
9.
Sung H, Park J, Oh S, Ha K, Joung H
. Consumption of Ultra-Processed Foods Increases the Likelihood of Having Obesity in Korean Women. Nutrients. 2021; 13(2).
PMC: 7926298.
DOI: 10.3390/nu13020698.
View
10.
Paula Neto H, Ausina P, Gomez L, Leandro J, Zancan P, Sola-Penna M
. Effects of Food Additives on Immune Cells As Contributors to Body Weight Gain and Immune-Mediated Metabolic Dysregulation. Front Immunol. 2017; 8:1478.
PMC: 5672138.
DOI: 10.3389/fimmu.2017.01478.
View
11.
Shim J, Shim S, Cha H, Kim J, Kim H
. Socioeconomic Characteristics and Trends in the Consumption of Ultra-Processed Foods in Korea from 2010 to 2018. Nutrients. 2021; 13(4).
PMC: 8065678.
DOI: 10.3390/nu13041120.
View
12.
Monteiro C, Cannon G, Moubarac J, Bortoletto Martins A, Martins C, Garzillo J
. Dietary guidelines to nourish humanity and the planet in the twenty-first century. A blueprint from Brazil. Public Health Nutr. 2015; 18(13):2311-22.
PMC: 10271430.
DOI: 10.1017/S1368980015002165.
View
13.
Baker P, Machado P, Santos T, Sievert K, Backholer K, Hadjikakou M
. Ultra-processed foods and the nutrition transition: Global, regional and national trends, food systems transformations and political economy drivers. Obes Rev. 2020; 21(12):e13126.
DOI: 10.1111/obr.13126.
View
14.
Monteiro C, Moubarac J, Cannon G, Ng S, Popkin B
. Ultra-processed products are becoming dominant in the global food system. Obes Rev. 2013; 14 Suppl 2:21-8.
DOI: 10.1111/obr.12107.
View
15.
Popkin B, Ng S
. The nutrition transition to a stage of high obesity and noncommunicable disease prevalence dominated by ultra-processed foods is not inevitable. Obes Rev. 2021; 23(1):e13366.
PMC: 8639733.
DOI: 10.1111/obr.13366.
View
16.
Beslay M, Srour B, Mejean C, Alles B, Fiolet T, Debras C
. Ultra-processed food intake in association with BMI change and risk of overweight and obesity: A prospective analysis of the French NutriNet-Santé cohort. PLoS Med. 2020; 17(8):e1003256.
PMC: 7451582.
DOI: 10.1371/journal.pmed.1003256.
View
17.
Hall K, Ayuketah A, Brychta R, Cai H, Cassimatis T, Chen K
. Ultra-Processed Diets Cause Excess Calorie Intake and Weight Gain: An Inpatient Randomized Controlled Trial of Ad Libitum Food Intake. Cell Metab. 2019; 30(1):67-77.e3.
PMC: 7946062.
DOI: 10.1016/j.cmet.2019.05.008.
View
18.
Forde C
. Beyond ultra-processed: considering the future role of food processing in human health. Proc Nutr Soc. 2023; 82(3):406-418.
DOI: 10.1017/S0029665123003014.
View
19.
Crimarco A, Landry M, Gardner C
. Ultra-processed Foods, Weight Gain, and Co-morbidity Risk. Curr Obes Rep. 2021; 11(3):80-92.
PMC: 8532572.
DOI: 10.1007/s13679-021-00460-y.
View
20.
Baraldi L, Martinez Steele E, Canella D, Monteiro C
. Consumption of ultra-processed foods and associated sociodemographic factors in the USA between 2007 and 2012: evidence from a nationally representative cross-sectional study. BMJ Open. 2018; 8(3):e020574.
PMC: 5855172.
DOI: 10.1136/bmjopen-2017-020574.
View