Cargando…

Changes of High-Purity Insoluble Fiber from Soybean Dregs (Okara) after Being Fermented by Colonic Flora and Its Adsorption Capacity

In order to explore the changes and properties of high-purity insoluble dietary fiber from okara (HPIDF) after entering the colon and be fermented by colonic flora, fermented high-purity insoluble dietary fiber (F-HPIDF) was obtained by simulated fermentation in vitro by HPIDF and colonic flora from...

Descripción completa

Detalles Bibliográficos
Autores principales: Lyu, Bo, Wang, Yi, Zhang, Xin, Chen, Yuxi, Fu, Hongling, Liu, Tong, Hao, Jianyu, Li, Yang, Yu, Hansong, Jiang, Lianzhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8536182/
https://www.ncbi.nlm.nih.gov/pubmed/34681533
http://dx.doi.org/10.3390/foods10102485
_version_ 1784587961586679808
author Lyu, Bo
Wang, Yi
Zhang, Xin
Chen, Yuxi
Fu, Hongling
Liu, Tong
Hao, Jianyu
Li, Yang
Yu, Hansong
Jiang, Lianzhou
author_facet Lyu, Bo
Wang, Yi
Zhang, Xin
Chen, Yuxi
Fu, Hongling
Liu, Tong
Hao, Jianyu
Li, Yang
Yu, Hansong
Jiang, Lianzhou
author_sort Lyu, Bo
collection PubMed
description In order to explore the changes and properties of high-purity insoluble dietary fiber from okara (HPIDF) after entering the colon and be fermented by colonic flora, fermented high-purity insoluble dietary fiber (F-HPIDF) was obtained by simulated fermentation in vitro by HPIDF and colonic flora from C57BL/6 mice. For exploring the differences of HPIDF and F-HPIDF, the changes of structure (SEM. FTIR, XRD, particle size, specific surface area, monosaccharide composition) and adsorption properties (water, oil, heavy metal irons, harmful substances) of HPIDF/F-HPIDF were explored. The results showed that F-HPIDF had a higher water-holding capacity (19.17 g/g), water-swelling capacity (24.83 mL/g), heavy metals-adsorption capacity (Cd(2+): 1.82 μmol/g; Pb(2+): 1.91 μmol/g; Zn(2+): 1.30 μmol/g; Cu(2+): 0.68 μmol/g), and harmful substances-adsorption capacity (GAC: 0.23 g/g; CAC: 14.80 mg/g; SCAC: 0.49 g/g) than HPIDF due to the changes of structure caused by fermentation. In addition, with the fermentation of HPIDF, some beneficial substances were produced, which might be potential intestinal prebiotics. The study of F-HPIDF strengthens the speculation that HPIDF may have potential bioactivities after entering the colon, which proved that okara-HPIDF may have potential functionality.
format Online
Article
Text
id pubmed-8536182
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85361822021-10-23 Changes of High-Purity Insoluble Fiber from Soybean Dregs (Okara) after Being Fermented by Colonic Flora and Its Adsorption Capacity Lyu, Bo Wang, Yi Zhang, Xin Chen, Yuxi Fu, Hongling Liu, Tong Hao, Jianyu Li, Yang Yu, Hansong Jiang, Lianzhou Foods Article In order to explore the changes and properties of high-purity insoluble dietary fiber from okara (HPIDF) after entering the colon and be fermented by colonic flora, fermented high-purity insoluble dietary fiber (F-HPIDF) was obtained by simulated fermentation in vitro by HPIDF and colonic flora from C57BL/6 mice. For exploring the differences of HPIDF and F-HPIDF, the changes of structure (SEM. FTIR, XRD, particle size, specific surface area, monosaccharide composition) and adsorption properties (water, oil, heavy metal irons, harmful substances) of HPIDF/F-HPIDF were explored. The results showed that F-HPIDF had a higher water-holding capacity (19.17 g/g), water-swelling capacity (24.83 mL/g), heavy metals-adsorption capacity (Cd(2+): 1.82 μmol/g; Pb(2+): 1.91 μmol/g; Zn(2+): 1.30 μmol/g; Cu(2+): 0.68 μmol/g), and harmful substances-adsorption capacity (GAC: 0.23 g/g; CAC: 14.80 mg/g; SCAC: 0.49 g/g) than HPIDF due to the changes of structure caused by fermentation. In addition, with the fermentation of HPIDF, some beneficial substances were produced, which might be potential intestinal prebiotics. The study of F-HPIDF strengthens the speculation that HPIDF may have potential bioactivities after entering the colon, which proved that okara-HPIDF may have potential functionality. MDPI 2021-10-17 /pmc/articles/PMC8536182/ /pubmed/34681533 http://dx.doi.org/10.3390/foods10102485 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
Lyu, Bo
Wang, Yi
Zhang, Xin
Chen, Yuxi
Fu, Hongling
Liu, Tong
Hao, Jianyu
Li, Yang
Yu, Hansong
Jiang, Lianzhou
Changes of High-Purity Insoluble Fiber from Soybean Dregs (Okara) after Being Fermented by Colonic Flora and Its Adsorption Capacity
title Changes of High-Purity Insoluble Fiber from Soybean Dregs (Okara) after Being Fermented by Colonic Flora and Its Adsorption Capacity
title_full Changes of High-Purity Insoluble Fiber from Soybean Dregs (Okara) after Being Fermented by Colonic Flora and Its Adsorption Capacity
title_fullStr Changes of High-Purity Insoluble Fiber from Soybean Dregs (Okara) after Being Fermented by Colonic Flora and Its Adsorption Capacity
title_full_unstemmed Changes of High-Purity Insoluble Fiber from Soybean Dregs (Okara) after Being Fermented by Colonic Flora and Its Adsorption Capacity
title_short Changes of High-Purity Insoluble Fiber from Soybean Dregs (Okara) after Being Fermented by Colonic Flora and Its Adsorption Capacity
title_sort changes of high-purity insoluble fiber from soybean dregs (okara) after being fermented by colonic flora and its adsorption capacity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8536182/
https://www.ncbi.nlm.nih.gov/pubmed/34681533
http://dx.doi.org/10.3390/foods10102485
work_keys_str_mv AT lyubo changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity
AT wangyi changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity
AT zhangxin changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity
AT chenyuxi changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity
AT fuhongling changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity
AT liutong changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity
AT haojianyu changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity
AT liyang changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity
AT yuhansong changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity
AT jianglianzhou changesofhighpurityinsolublefiberfromsoybeandregsokaraafterbeingfermentedbycolonicfloraanditsadsorptioncapacity