Cargando…

Novel Fabrication of Zein-Soluble Soybean Polysaccharide Nanocomposites Induced by Multifrequency Ultrasound, and Their Roles on Microstructure, Rheological Properties and Stability of Pickering Emulsions

In this work, soluble soybean polysaccharides (SSPS) were employed together with multifrequency ultrasound to fabricate zein nanocomposites which were conducive to enhancing the stability of high internal phase emulsions (HIPEs). Compared with non-ultrasonic treated zein colloidal particle samples (...

Descripción completa

Detalles Bibliográficos
Autores principales: Song, Teng, Xiong, Zhiyu, Shi, Tong, Monto, Abdul Razak, Yuan, Li, Gao, Ruichang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8544383/
https://www.ncbi.nlm.nih.gov/pubmed/34698201
http://dx.doi.org/10.3390/gels7040166
_version_ 1784589805531693056
author Song, Teng
Xiong, Zhiyu
Shi, Tong
Monto, Abdul Razak
Yuan, Li
Gao, Ruichang
author_facet Song, Teng
Xiong, Zhiyu
Shi, Tong
Monto, Abdul Razak
Yuan, Li
Gao, Ruichang
author_sort Song, Teng
collection PubMed
description In this work, soluble soybean polysaccharides (SSPS) were employed together with multifrequency ultrasound to fabricate zein nanocomposites which were conducive to enhancing the stability of high internal phase emulsions (HIPEs). Compared with non-ultrasonic treated zein colloidal particle samples (132.23 ± 0.85 nm), the zein nanoparticles samples induced by dual-frequency ultrasound exhibited a smaller particle size (114.54 ± 0.23 nm). Furthermore, the particle size of the zein composite nanoparticles (256.5 ± 4.81) remarkably increased with SPSS coating, consequently leading to larger fluorescence intensity together with lower zeta-potential (−21.90 ± 0.46 mv) and surface hydrophobicity (4992.15 ± 37.28). Meanwhile, zein-SSPS composite nanoparticles induced by DFU showed remarkably enhanced thermal stability. Fourier transform infrared (FTIR) spectroscopy and Circular dichroism (CD) spectroscopy were also used to characterize zein-SSPS composite nanoparticles. The results confirmed that DFU combined with SSPS treatment significantly increased β-sheets (from 12.60% ± 0.25 b to 21.53% ± 0.37 c) and reduced α-helix content (34.83% ± 0.71 b to 23.86% ± 0.66 a) remarkably. Notably, HIPEs prepared from zein-SSPS nanocomposites induced by dual-frequency simultaneous ultrasound (DFU) at 40/60 kHz showed better storage stability. HIPEs stabilized by DFU induced zein-SSPS nanoparticles exhibited higher storage modulus (G′) and loss modulus (G″), leading to lower fluidity, together with better stability contributing to the water-binding capacity and three-dimensional (3D) network structure of the HIPEs emulsion. The findings of this study indicate that this method can be utilized and integrated to further extend the application of zein and SSPS and explore HIPEs.
format Online
Article
Text
id pubmed-8544383
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85443832021-10-26 Novel Fabrication of Zein-Soluble Soybean Polysaccharide Nanocomposites Induced by Multifrequency Ultrasound, and Their Roles on Microstructure, Rheological Properties and Stability of Pickering Emulsions Song, Teng Xiong, Zhiyu Shi, Tong Monto, Abdul Razak Yuan, Li Gao, Ruichang Gels Article In this work, soluble soybean polysaccharides (SSPS) were employed together with multifrequency ultrasound to fabricate zein nanocomposites which were conducive to enhancing the stability of high internal phase emulsions (HIPEs). Compared with non-ultrasonic treated zein colloidal particle samples (132.23 ± 0.85 nm), the zein nanoparticles samples induced by dual-frequency ultrasound exhibited a smaller particle size (114.54 ± 0.23 nm). Furthermore, the particle size of the zein composite nanoparticles (256.5 ± 4.81) remarkably increased with SPSS coating, consequently leading to larger fluorescence intensity together with lower zeta-potential (−21.90 ± 0.46 mv) and surface hydrophobicity (4992.15 ± 37.28). Meanwhile, zein-SSPS composite nanoparticles induced by DFU showed remarkably enhanced thermal stability. Fourier transform infrared (FTIR) spectroscopy and Circular dichroism (CD) spectroscopy were also used to characterize zein-SSPS composite nanoparticles. The results confirmed that DFU combined with SSPS treatment significantly increased β-sheets (from 12.60% ± 0.25 b to 21.53% ± 0.37 c) and reduced α-helix content (34.83% ± 0.71 b to 23.86% ± 0.66 a) remarkably. Notably, HIPEs prepared from zein-SSPS nanocomposites induced by dual-frequency simultaneous ultrasound (DFU) at 40/60 kHz showed better storage stability. HIPEs stabilized by DFU induced zein-SSPS nanoparticles exhibited higher storage modulus (G′) and loss modulus (G″), leading to lower fluidity, together with better stability contributing to the water-binding capacity and three-dimensional (3D) network structure of the HIPEs emulsion. The findings of this study indicate that this method can be utilized and integrated to further extend the application of zein and SSPS and explore HIPEs. MDPI 2021-10-13 /pmc/articles/PMC8544383/ /pubmed/34698201 http://dx.doi.org/10.3390/gels7040166 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
Song, Teng
Xiong, Zhiyu
Shi, Tong
Monto, Abdul Razak
Yuan, Li
Gao, Ruichang
Novel Fabrication of Zein-Soluble Soybean Polysaccharide Nanocomposites Induced by Multifrequency Ultrasound, and Their Roles on Microstructure, Rheological Properties and Stability of Pickering Emulsions
title Novel Fabrication of Zein-Soluble Soybean Polysaccharide Nanocomposites Induced by Multifrequency Ultrasound, and Their Roles on Microstructure, Rheological Properties and Stability of Pickering Emulsions
title_full Novel Fabrication of Zein-Soluble Soybean Polysaccharide Nanocomposites Induced by Multifrequency Ultrasound, and Their Roles on Microstructure, Rheological Properties and Stability of Pickering Emulsions
title_fullStr Novel Fabrication of Zein-Soluble Soybean Polysaccharide Nanocomposites Induced by Multifrequency Ultrasound, and Their Roles on Microstructure, Rheological Properties and Stability of Pickering Emulsions
title_full_unstemmed Novel Fabrication of Zein-Soluble Soybean Polysaccharide Nanocomposites Induced by Multifrequency Ultrasound, and Their Roles on Microstructure, Rheological Properties and Stability of Pickering Emulsions
title_short Novel Fabrication of Zein-Soluble Soybean Polysaccharide Nanocomposites Induced by Multifrequency Ultrasound, and Their Roles on Microstructure, Rheological Properties and Stability of Pickering Emulsions
title_sort novel fabrication of zein-soluble soybean polysaccharide nanocomposites induced by multifrequency ultrasound, and their roles on microstructure, rheological properties and stability of pickering emulsions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8544383/
https://www.ncbi.nlm.nih.gov/pubmed/34698201
http://dx.doi.org/10.3390/gels7040166
work_keys_str_mv AT songteng novelfabricationofzeinsolublesoybeanpolysaccharidenanocompositesinducedbymultifrequencyultrasoundandtheirrolesonmicrostructurerheologicalpropertiesandstabilityofpickeringemulsions
AT xiongzhiyu novelfabricationofzeinsolublesoybeanpolysaccharidenanocompositesinducedbymultifrequencyultrasoundandtheirrolesonmicrostructurerheologicalpropertiesandstabilityofpickeringemulsions
AT shitong novelfabricationofzeinsolublesoybeanpolysaccharidenanocompositesinducedbymultifrequencyultrasoundandtheirrolesonmicrostructurerheologicalpropertiesandstabilityofpickeringemulsions
AT montoabdulrazak novelfabricationofzeinsolublesoybeanpolysaccharidenanocompositesinducedbymultifrequencyultrasoundandtheirrolesonmicrostructurerheologicalpropertiesandstabilityofpickeringemulsions
AT yuanli novelfabricationofzeinsolublesoybeanpolysaccharidenanocompositesinducedbymultifrequencyultrasoundandtheirrolesonmicrostructurerheologicalpropertiesandstabilityofpickeringemulsions
AT gaoruichang novelfabricationofzeinsolublesoybeanpolysaccharidenanocompositesinducedbymultifrequencyultrasoundandtheirrolesonmicrostructurerheologicalpropertiesandstabilityofpickeringemulsions