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Pasta Structure Affects Mastication, Bolus Properties, and Postprandial Glucose and Insulin Metabolism in Healthy Adults
BACKGROUND: Structure and protein–starch interactions in pasta products can be responsible for lower postprandial glycemic responses compared with other cereal foods. OBJECTIVES: We tested the effect on postprandial glucose metabolism induced by 2 pasta products, couscous, and bread, through their s...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971003/ https://www.ncbi.nlm.nih.gov/pubmed/34669959 http://dx.doi.org/10.1093/jn/nxab361 |
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author | Vanhatalo, Saara Dall'Asta, Margherita Cossu, Marta Chiavaroli, Laura Francinelli, Veronica Pede, Giuseppe Di Dodi, Rossella Närväinen, Johanna Antonini, Monica Goldoni, Matteo Holopainen-Mantila, Ulla Cas, Alessandra Dei Bonadonna, Riccardo Brighenti, Furio Poutanen, Kaisa Scazzina, Francesca |
author_facet | Vanhatalo, Saara Dall'Asta, Margherita Cossu, Marta Chiavaroli, Laura Francinelli, Veronica Pede, Giuseppe Di Dodi, Rossella Närväinen, Johanna Antonini, Monica Goldoni, Matteo Holopainen-Mantila, Ulla Cas, Alessandra Dei Bonadonna, Riccardo Brighenti, Furio Poutanen, Kaisa Scazzina, Francesca |
author_sort | Vanhatalo, Saara |
collection | PubMed |
description | BACKGROUND: Structure and protein–starch interactions in pasta products can be responsible for lower postprandial glycemic responses compared with other cereal foods. OBJECTIVES: We tested the effect on postprandial glucose metabolism induced by 2 pasta products, couscous, and bread, through their structural changes during mastication and simulated gastric digestion. METHODS: Two randomized controlled trials (n = 30/trial) in healthy, normal-weight adults (mean BMI of 23.9 kg/m(2) (study 1) and 23.0 kg/m(2) (study 2)) evaluated postprandial glucose metabolism modulation to portions of durum wheat semolina spaghetti, penne, couscous, and bread each containing 50 g available carbohydrate. A mastication trial involving 26 normal-weight adults was conducted to investigate mastication processes and changes in particle size distribution and microstructure (light microscopy) of boluses after mastication and in vitro gastric digestion. RESULTS: Both pasta products resulted in lower areas under the 2-h curve for blood glucose (−40% for spaghetti and −22% for penne compared with couscous; −41% for spaghetti and −30% for penne compared with bread), compared with the other grain products (P < 0.05). Pasta products required more chews (spaghetti: 34 ± 18; penne: 38 ± 20; bread: 27 ± 13; couscous: 24 ± 17) and longer oral processing (spaghetti: 21 ± 13 s; penne: 23 ± 14 s; bread: 18 ± 9 s; couscous: 14 ± 10 s) compared with bread or couscous (P < 0.01). Pastas contained more large particles (46–67% of total particle area) compared with bread (0–30%) and couscous (1%) after mastication and in vitro gastric digestion. After in vitro gastric digestion, pasta samples still contained large areas of nonhydrolyzed starch embedded within the protein network; the protein in bread and couscous was almost entirely digested, and the starch was hydrolyzed. CONCLUSIONS: Preservation of the pasta structure during mastication and gastric digestion explains slower starch hydrolysis and, consequently, lower postprandial glycemia compared with bread or couscous prepared from the same durum wheat semolina flour in healthy adults. The postprandial in vivo trials were registered at clinicaltrials.gov as NCT03098017 and NCT03104686. |
format | Online Article Text |
id | pubmed-8971003 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-89710032022-04-04 Pasta Structure Affects Mastication, Bolus Properties, and Postprandial Glucose and Insulin Metabolism in Healthy Adults Vanhatalo, Saara Dall'Asta, Margherita Cossu, Marta Chiavaroli, Laura Francinelli, Veronica Pede, Giuseppe Di Dodi, Rossella Närväinen, Johanna Antonini, Monica Goldoni, Matteo Holopainen-Mantila, Ulla Cas, Alessandra Dei Bonadonna, Riccardo Brighenti, Furio Poutanen, Kaisa Scazzina, Francesca J Nutr Nutrient Physiology, Metabolism, and Nutrient-Nutrient Interactions BACKGROUND: Structure and protein–starch interactions in pasta products can be responsible for lower postprandial glycemic responses compared with other cereal foods. OBJECTIVES: We tested the effect on postprandial glucose metabolism induced by 2 pasta products, couscous, and bread, through their structural changes during mastication and simulated gastric digestion. METHODS: Two randomized controlled trials (n = 30/trial) in healthy, normal-weight adults (mean BMI of 23.9 kg/m(2) (study 1) and 23.0 kg/m(2) (study 2)) evaluated postprandial glucose metabolism modulation to portions of durum wheat semolina spaghetti, penne, couscous, and bread each containing 50 g available carbohydrate. A mastication trial involving 26 normal-weight adults was conducted to investigate mastication processes and changes in particle size distribution and microstructure (light microscopy) of boluses after mastication and in vitro gastric digestion. RESULTS: Both pasta products resulted in lower areas under the 2-h curve for blood glucose (−40% for spaghetti and −22% for penne compared with couscous; −41% for spaghetti and −30% for penne compared with bread), compared with the other grain products (P < 0.05). Pasta products required more chews (spaghetti: 34 ± 18; penne: 38 ± 20; bread: 27 ± 13; couscous: 24 ± 17) and longer oral processing (spaghetti: 21 ± 13 s; penne: 23 ± 14 s; bread: 18 ± 9 s; couscous: 14 ± 10 s) compared with bread or couscous (P < 0.01). Pastas contained more large particles (46–67% of total particle area) compared with bread (0–30%) and couscous (1%) after mastication and in vitro gastric digestion. After in vitro gastric digestion, pasta samples still contained large areas of nonhydrolyzed starch embedded within the protein network; the protein in bread and couscous was almost entirely digested, and the starch was hydrolyzed. CONCLUSIONS: Preservation of the pasta structure during mastication and gastric digestion explains slower starch hydrolysis and, consequently, lower postprandial glycemia compared with bread or couscous prepared from the same durum wheat semolina flour in healthy adults. The postprandial in vivo trials were registered at clinicaltrials.gov as NCT03098017 and NCT03104686. Oxford University Press 2021-10-20 /pmc/articles/PMC8971003/ /pubmed/34669959 http://dx.doi.org/10.1093/jn/nxab361 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the American Society for Nutrition. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Nutrient Physiology, Metabolism, and Nutrient-Nutrient Interactions Vanhatalo, Saara Dall'Asta, Margherita Cossu, Marta Chiavaroli, Laura Francinelli, Veronica Pede, Giuseppe Di Dodi, Rossella Närväinen, Johanna Antonini, Monica Goldoni, Matteo Holopainen-Mantila, Ulla Cas, Alessandra Dei Bonadonna, Riccardo Brighenti, Furio Poutanen, Kaisa Scazzina, Francesca Pasta Structure Affects Mastication, Bolus Properties, and Postprandial Glucose and Insulin Metabolism in Healthy Adults |
title | Pasta Structure Affects Mastication, Bolus Properties, and Postprandial Glucose and Insulin Metabolism in Healthy Adults |
title_full | Pasta Structure Affects Mastication, Bolus Properties, and Postprandial Glucose and Insulin Metabolism in Healthy Adults |
title_fullStr | Pasta Structure Affects Mastication, Bolus Properties, and Postprandial Glucose and Insulin Metabolism in Healthy Adults |
title_full_unstemmed | Pasta Structure Affects Mastication, Bolus Properties, and Postprandial Glucose and Insulin Metabolism in Healthy Adults |
title_short | Pasta Structure Affects Mastication, Bolus Properties, and Postprandial Glucose and Insulin Metabolism in Healthy Adults |
title_sort | pasta structure affects mastication, bolus properties, and postprandial glucose and insulin metabolism in healthy adults |
topic | Nutrient Physiology, Metabolism, and Nutrient-Nutrient Interactions |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971003/ https://www.ncbi.nlm.nih.gov/pubmed/34669959 http://dx.doi.org/10.1093/jn/nxab361 |
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