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The Effect of Wet Milling and Cryogenic Milling on the Structure and Physicochemical Properties of Wheat Bran

Wheat bran consumption is associated with several health benefits, but its incorporation into food products remains low because of sensory and technofunctional issues. Besides, its full beneficial potential is probably not achieved because of its recalcitrant nature and inaccessible structure. Parti...

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Autores principales: De Bondt, Yamina, Liberloo, Inge, Roye, Chiara, Windhab, Erich J., Lamothe, Lisa, King, Roberto, Courtin, Christophe M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7759771/
https://www.ncbi.nlm.nih.gov/pubmed/33260871
http://dx.doi.org/10.3390/foods9121755
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author De Bondt, Yamina
Liberloo, Inge
Roye, Chiara
Windhab, Erich J.
Lamothe, Lisa
King, Roberto
Courtin, Christophe M.
author_facet De Bondt, Yamina
Liberloo, Inge
Roye, Chiara
Windhab, Erich J.
Lamothe, Lisa
King, Roberto
Courtin, Christophe M.
author_sort De Bondt, Yamina
collection PubMed
description Wheat bran consumption is associated with several health benefits, but its incorporation into food products remains low because of sensory and technofunctional issues. Besides, its full beneficial potential is probably not achieved because of its recalcitrant nature and inaccessible structure. Particle size reduction can affect both technofunctional and nutrition-related properties. Therefore, in this study, wet milling and cryogenic milling, two techniques that showed potential for extreme particle size reduction, were used. The effect of the milling techniques, performed on laboratory and large scale, was evaluated on the structure and physicochemical properties of wheat bran. With a median particle size (d(50)) of 6 µm, the smallest particle size was achieved with cryogenic milling on a laboratory scale. Cryogenic milling on a large scale and wet milling on laboratory and large scale resulted in a particle size reduction to a d(50) of 28–38 µm. In the milled samples, the wheat bran structure was broken down, and almost all cells were opened. Wet milling on laboratory and large scale resulted in bran with a more porous structure, a larger surface area and a higher capacity for binding water compared to cryogenic milling on a large scale. The extensive particle size reduction by cryogenic milling on a laboratory scale resulted in wheat bran with the highest surface area and strong water retention capacity. Endogenous enzyme activity and mechanical breakdown during the different milling procedures resulted in different extents of breakdown of starch, sucrose, β-glucan, arabinoxylan and phytate. Therefore, the diverse impact of the milling techniques on the physicochemical properties of wheat bran could be used to target different technofunctional and health-related properties.
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spelling pubmed-77597712020-12-26 The Effect of Wet Milling and Cryogenic Milling on the Structure and Physicochemical Properties of Wheat Bran De Bondt, Yamina Liberloo, Inge Roye, Chiara Windhab, Erich J. Lamothe, Lisa King, Roberto Courtin, Christophe M. Foods Article Wheat bran consumption is associated with several health benefits, but its incorporation into food products remains low because of sensory and technofunctional issues. Besides, its full beneficial potential is probably not achieved because of its recalcitrant nature and inaccessible structure. Particle size reduction can affect both technofunctional and nutrition-related properties. Therefore, in this study, wet milling and cryogenic milling, two techniques that showed potential for extreme particle size reduction, were used. The effect of the milling techniques, performed on laboratory and large scale, was evaluated on the structure and physicochemical properties of wheat bran. With a median particle size (d(50)) of 6 µm, the smallest particle size was achieved with cryogenic milling on a laboratory scale. Cryogenic milling on a large scale and wet milling on laboratory and large scale resulted in a particle size reduction to a d(50) of 28–38 µm. In the milled samples, the wheat bran structure was broken down, and almost all cells were opened. Wet milling on laboratory and large scale resulted in bran with a more porous structure, a larger surface area and a higher capacity for binding water compared to cryogenic milling on a large scale. The extensive particle size reduction by cryogenic milling on a laboratory scale resulted in wheat bran with the highest surface area and strong water retention capacity. Endogenous enzyme activity and mechanical breakdown during the different milling procedures resulted in different extents of breakdown of starch, sucrose, β-glucan, arabinoxylan and phytate. Therefore, the diverse impact of the milling techniques on the physicochemical properties of wheat bran could be used to target different technofunctional and health-related properties. MDPI 2020-11-27 /pmc/articles/PMC7759771/ /pubmed/33260871 http://dx.doi.org/10.3390/foods9121755 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
De Bondt, Yamina
Liberloo, Inge
Roye, Chiara
Windhab, Erich J.
Lamothe, Lisa
King, Roberto
Courtin, Christophe M.
The Effect of Wet Milling and Cryogenic Milling on the Structure and Physicochemical Properties of Wheat Bran
title The Effect of Wet Milling and Cryogenic Milling on the Structure and Physicochemical Properties of Wheat Bran
title_full The Effect of Wet Milling and Cryogenic Milling on the Structure and Physicochemical Properties of Wheat Bran
title_fullStr The Effect of Wet Milling and Cryogenic Milling on the Structure and Physicochemical Properties of Wheat Bran
title_full_unstemmed The Effect of Wet Milling and Cryogenic Milling on the Structure and Physicochemical Properties of Wheat Bran
title_short The Effect of Wet Milling and Cryogenic Milling on the Structure and Physicochemical Properties of Wheat Bran
title_sort effect of wet milling and cryogenic milling on the structure and physicochemical properties of wheat bran
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7759771/
https://www.ncbi.nlm.nih.gov/pubmed/33260871
http://dx.doi.org/10.3390/foods9121755
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