Study2016

Minimally processed foods are more satiating and less hyperglycemic than ultra-processed foods: a preliminary study with 98 ready-to-eat foods

Fardet A

Food & function · 249 citations

Review labels

No stated lifestyle adjustment

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

How it was studied

Design
Cross-sectional study (classified by our AI screen)
Main outcome
Health markers and function
Intake measured by
Not stated

Who paid for it

Funding
Independent funding
Nonprofit
Société Francophone du Diabète

Based on 1 listed funder(s).

Publication

Published
2016-01-01 · Food Funct · vol. 7 · issue 5 · pp. 2338–2346
Publisher
Royal Society of Chemistry
Cited
362 citations · more than 99% of similar papers · 15.7× the field average
Impact
Top 10% most cited in its field
References
45 works
Access
Free to read
Research areas
Consumer Attitudes and Food Labeling · Nutritional Studies and Diet · Obesity, Physical Activity, Diet
Keywords
Glycemic index, Food science, Food processing, Glycemic, Glycemic load, Glycaemic index, Novel food, Food products, Biotechnology, Chemistry, Biology, Insulin
MeSH
carbohydrates, blood glucose, diet, food analysis, satiation, nutritive value, glycemic index, eating, food industry, food handling, food, fast foods, food ingredients

1 author

From FR

  • Anthony Fardet · correspondingInstitut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement; Centre de Recherche en Nutrition Humaine d'Auvergne

Abstract

Beyond nutritional composition, food structure is increasingly recognized to play a role in food health potential, notably in satiety and glycemic responses. Food structure is also highly dependent on processing conditions. The hypothesis for this study is, based on a data set of 98 ready-to-eat foods, that the degree of food processing would correlate with the satiety index (SI) and glycemic response. Glycemic response was evaluated according to two indices: the glycemic index (GI) and a newly designed index, the glycemic glucose equivalent (GGE). The GGE indicates how a quantity of a certain food affects blood glucose levels by identifying the amount of food glucose that would have an effect equivalent to that of the food. Then, foods were clustered within three processing groups based on the international NOVA classification: (1) raw and minimally processed foods; (2) processed foods; and (3) ultra-processed foods. Ultra-processed foods are industrial formulations of substances extracted or derived from food and additives, typically with five or more and usually many (cheap) ingredients. The data were correlated by nonparametric Spearman's rank correlation coefficient on quantitative data. The main results show strong correlations between GGE, SI and the degree of food processing, while GI is not correlated with the degree of processing. Thus, the more food is processed, the higher the glycemic response and the lower its satiety potential. The study suggests that complex, natural, minimally and/or processed foods should be encouraged for consumption rather than highly unstructured and ultra-processed foods when choosing weakly hyperglycemic and satiating foods.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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