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Oilseed Cake Flour Composition, Functional Properties and Antioxidant Potential as Effects of Sieving and Species Differences

Oilseed cakes are produced as a by-product of oil pressing and are mostly used as feed. Their use for human consumption is due to the functional properties and benefits for human health. Herein, oilseed cake flours of eight species (flax, hemp, milk thistle, poppy, pumpkin, rapeseed, safflower, sunf...

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Autores principales: Bárta, Jan, Bártová, Veronika, Jarošová, Markéta, Švajner, Josef, Smetana, Pavel, Kadlec, Jaromír, Filip, Vladimír, Kyselka, Jan, Berčíková, Markéta, Zdráhal, Zbyněk, Bjelková, Marie, Kozak, Marcin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8624202/
https://www.ncbi.nlm.nih.gov/pubmed/34829047
http://dx.doi.org/10.3390/foods10112766
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author Bárta, Jan
Bártová, Veronika
Jarošová, Markéta
Švajner, Josef
Smetana, Pavel
Kadlec, Jaromír
Filip, Vladimír
Kyselka, Jan
Berčíková, Markéta
Zdráhal, Zbyněk
Bjelková, Marie
Kozak, Marcin
author_facet Bárta, Jan
Bártová, Veronika
Jarošová, Markéta
Švajner, Josef
Smetana, Pavel
Kadlec, Jaromír
Filip, Vladimír
Kyselka, Jan
Berčíková, Markéta
Zdráhal, Zbyněk
Bjelková, Marie
Kozak, Marcin
author_sort Bárta, Jan
collection PubMed
description Oilseed cakes are produced as a by-product of oil pressing and are mostly used as feed. Their use for human consumption is due to the functional properties and benefits for human health. Herein, oilseed cake flours of eight species (flax, hemp, milk thistle, poppy, pumpkin, rapeseed, safflower, sunflower) were sieved into fractions above (A250) and below (B250) 250 µm. The chemical composition, SDS-PAGE profiles, colour, functional properties and antioxidant activities of these flours were evaluated. The B250 fractions were evaluated as being protein and ash rich, reaching crude protein and ash content ranging from 31.78% (milk thistle) to 57.47% (pumpkin) and from 5.0% (flax) to 11.19% (poppy), respectively. A high content of carbohydrates was found in the flours of hemp, milk thistle and safflower with a significant increase for the A250 fraction, with a subsequent relation to a high water holding capacity (WHC) for the A250 fraction (flax, poppy, pumpkin and sunflower). The A250 milk thistle flour was found to have the richest in polyphenols content (TPC) (40.89 mg GAE/g), with the highest antioxidant activity using an ABTS•+ assay (101.95 mg AAE/g). The A250 fraction for all the species exhibited lower lightness than the B250 fraction. The obtained results indicate that sieving oilseed flour with the aim to prepare flours with specific functional characteristics and composition is efficient only in combination with a particular species.
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spelling pubmed-86242022021-11-27 Oilseed Cake Flour Composition, Functional Properties and Antioxidant Potential as Effects of Sieving and Species Differences Bárta, Jan Bártová, Veronika Jarošová, Markéta Švajner, Josef Smetana, Pavel Kadlec, Jaromír Filip, Vladimír Kyselka, Jan Berčíková, Markéta Zdráhal, Zbyněk Bjelková, Marie Kozak, Marcin Foods Article Oilseed cakes are produced as a by-product of oil pressing and are mostly used as feed. Their use for human consumption is due to the functional properties and benefits for human health. Herein, oilseed cake flours of eight species (flax, hemp, milk thistle, poppy, pumpkin, rapeseed, safflower, sunflower) were sieved into fractions above (A250) and below (B250) 250 µm. The chemical composition, SDS-PAGE profiles, colour, functional properties and antioxidant activities of these flours were evaluated. The B250 fractions were evaluated as being protein and ash rich, reaching crude protein and ash content ranging from 31.78% (milk thistle) to 57.47% (pumpkin) and from 5.0% (flax) to 11.19% (poppy), respectively. A high content of carbohydrates was found in the flours of hemp, milk thistle and safflower with a significant increase for the A250 fraction, with a subsequent relation to a high water holding capacity (WHC) for the A250 fraction (flax, poppy, pumpkin and sunflower). The A250 milk thistle flour was found to have the richest in polyphenols content (TPC) (40.89 mg GAE/g), with the highest antioxidant activity using an ABTS•+ assay (101.95 mg AAE/g). The A250 fraction for all the species exhibited lower lightness than the B250 fraction. The obtained results indicate that sieving oilseed flour with the aim to prepare flours with specific functional characteristics and composition is efficient only in combination with a particular species. MDPI 2021-11-11 /pmc/articles/PMC8624202/ /pubmed/34829047 http://dx.doi.org/10.3390/foods10112766 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bárta, Jan
Bártová, Veronika
Jarošová, Markéta
Švajner, Josef
Smetana, Pavel
Kadlec, Jaromír
Filip, Vladimír
Kyselka, Jan
Berčíková, Markéta
Zdráhal, Zbyněk
Bjelková, Marie
Kozak, Marcin
Oilseed Cake Flour Composition, Functional Properties and Antioxidant Potential as Effects of Sieving and Species Differences
title Oilseed Cake Flour Composition, Functional Properties and Antioxidant Potential as Effects of Sieving and Species Differences
title_full Oilseed Cake Flour Composition, Functional Properties and Antioxidant Potential as Effects of Sieving and Species Differences
title_fullStr Oilseed Cake Flour Composition, Functional Properties and Antioxidant Potential as Effects of Sieving and Species Differences
title_full_unstemmed Oilseed Cake Flour Composition, Functional Properties and Antioxidant Potential as Effects of Sieving and Species Differences
title_short Oilseed Cake Flour Composition, Functional Properties and Antioxidant Potential as Effects of Sieving and Species Differences
title_sort oilseed cake flour composition, functional properties and antioxidant potential as effects of sieving and species differences
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8624202/
https://www.ncbi.nlm.nih.gov/pubmed/34829047
http://dx.doi.org/10.3390/foods10112766
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