The lignan macromolecule from flaxseed : structure and bioconversion of lignans

Flaxseeds are known already for a long time for their positive health effects. The high content of dietary fiber, the advantageous fatty acid composition and the lignans are held responsible for this. Lignans are compounds, which have a similar structure as human estradiol. As a result of that, they are expected to influence hormone metabolism, and (beneficially) influence human health. However, the lignans from flaxseed are not bioactive themselves. They need to be bioactivated by the bacteria in the human intestinal tract. Firstly, it was investigated how lignans are present in flaxseed. Lignans were found to form oligomeric molecules together with other components. These oligomeric molecules are called the lignan macromolecule. Secondly, it was investigated, which microorganisms are involved in the bioconversion reaction and we isolated the formed bioactive lignans. Via this procedure bioactive lignans has been obtained, which can be used as a functional food ingredient.

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Bibliographic Details
Main Author: Struijs, K.
Other Authors: Gruppen, Harry
Format: Doctoral thesis biblioteca
Language:English
Subjects:bioactive compounds, chemical composition, fermentation, lignans, linseed, sesame seed, bioactieve verbindingen, chemische samenstelling, fermentatie, lignanen, lijnzaad, sesamzaad,
Online Access:https://research.wur.nl/en/publications/the-lignan-macromolecule-from-flaxseed-structure-and-bioconversio
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spelling dig-wur-nl-wurpubs-3702362024-06-25 Struijs, K. Gruppen, Harry Vinken, J.P. Doctoral thesis The lignan macromolecule from flaxseed : structure and bioconversion of lignans 2008 Flaxseeds are known already for a long time for their positive health effects. The high content of dietary fiber, the advantageous fatty acid composition and the lignans are held responsible for this. Lignans are compounds, which have a similar structure as human estradiol. As a result of that, they are expected to influence hormone metabolism, and (beneficially) influence human health. However, the lignans from flaxseed are not bioactive themselves. They need to be bioactivated by the bacteria in the human intestinal tract. Firstly, it was investigated how lignans are present in flaxseed. Lignans were found to form oligomeric molecules together with other components. These oligomeric molecules are called the lignan macromolecule. Secondly, it was investigated, which microorganisms are involved in the bioconversion reaction and we isolated the formed bioactive lignans. Via this procedure bioactive lignans has been obtained, which can be used as a functional food ingredient. en application/pdf https://research.wur.nl/en/publications/the-lignan-macromolecule-from-flaxseed-structure-and-bioconversio https://edepot.wur.nl/8307 bioactive compounds chemical composition fermentation lignans linseed sesame seed bioactieve verbindingen chemische samenstelling fermentatie lignanen lijnzaad sesamzaad Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic bioactive compounds
chemical composition
fermentation
lignans
linseed
sesame seed
bioactieve verbindingen
chemische samenstelling
fermentatie
lignanen
lijnzaad
sesamzaad
bioactive compounds
chemical composition
fermentation
lignans
linseed
sesame seed
bioactieve verbindingen
chemische samenstelling
fermentatie
lignanen
lijnzaad
sesamzaad
spellingShingle bioactive compounds
chemical composition
fermentation
lignans
linseed
sesame seed
bioactieve verbindingen
chemische samenstelling
fermentatie
lignanen
lijnzaad
sesamzaad
bioactive compounds
chemical composition
fermentation
lignans
linseed
sesame seed
bioactieve verbindingen
chemische samenstelling
fermentatie
lignanen
lijnzaad
sesamzaad
Struijs, K.
The lignan macromolecule from flaxseed : structure and bioconversion of lignans
description Flaxseeds are known already for a long time for their positive health effects. The high content of dietary fiber, the advantageous fatty acid composition and the lignans are held responsible for this. Lignans are compounds, which have a similar structure as human estradiol. As a result of that, they are expected to influence hormone metabolism, and (beneficially) influence human health. However, the lignans from flaxseed are not bioactive themselves. They need to be bioactivated by the bacteria in the human intestinal tract. Firstly, it was investigated how lignans are present in flaxseed. Lignans were found to form oligomeric molecules together with other components. These oligomeric molecules are called the lignan macromolecule. Secondly, it was investigated, which microorganisms are involved in the bioconversion reaction and we isolated the formed bioactive lignans. Via this procedure bioactive lignans has been obtained, which can be used as a functional food ingredient.
author2 Gruppen, Harry
author_facet Gruppen, Harry
Struijs, K.
format Doctoral thesis
topic_facet bioactive compounds
chemical composition
fermentation
lignans
linseed
sesame seed
bioactieve verbindingen
chemische samenstelling
fermentatie
lignanen
lijnzaad
sesamzaad
author Struijs, K.
author_sort Struijs, K.
title The lignan macromolecule from flaxseed : structure and bioconversion of lignans
title_short The lignan macromolecule from flaxseed : structure and bioconversion of lignans
title_full The lignan macromolecule from flaxseed : structure and bioconversion of lignans
title_fullStr The lignan macromolecule from flaxseed : structure and bioconversion of lignans
title_full_unstemmed The lignan macromolecule from flaxseed : structure and bioconversion of lignans
title_sort lignan macromolecule from flaxseed : structure and bioconversion of lignans
url https://research.wur.nl/en/publications/the-lignan-macromolecule-from-flaxseed-structure-and-bioconversio
work_keys_str_mv AT struijsk thelignanmacromoleculefromflaxseedstructureandbioconversionoflignans
AT struijsk lignanmacromoleculefromflaxseedstructureandbioconversionoflignans
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