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Electrospray-Assisted Fabrication of Dextran–Whey Protein Isolation Microcapsules for the Encapsulation of Selenium-Enriched Peptide

Selenium-enriched peptide (SP, selenopeptide) is an excellent organic selenium supplement that has attracted increasing attention due to its superior physiological effects. In this study, dextran–whey protein isolation–SP (DX-WPI-SP) microcapsules were fabricated via high-voltage electrospraying tec...

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Autores principales: He, Jiangling, Wang, Zhenyu, Wei, Lingfeng, Ye, Yuanyuan, Din, Zia-ud, Zhou, Jiaojiao, Cong, Xin, Cheng, Shuiyuan, Cai, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10000993/
https://www.ncbi.nlm.nih.gov/pubmed/36900527
http://dx.doi.org/10.3390/foods12051008
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author He, Jiangling
Wang, Zhenyu
Wei, Lingfeng
Ye, Yuanyuan
Din, Zia-ud
Zhou, Jiaojiao
Cong, Xin
Cheng, Shuiyuan
Cai, Jie
author_facet He, Jiangling
Wang, Zhenyu
Wei, Lingfeng
Ye, Yuanyuan
Din, Zia-ud
Zhou, Jiaojiao
Cong, Xin
Cheng, Shuiyuan
Cai, Jie
author_sort He, Jiangling
collection PubMed
description Selenium-enriched peptide (SP, selenopeptide) is an excellent organic selenium supplement that has attracted increasing attention due to its superior physiological effects. In this study, dextran–whey protein isolation–SP (DX-WPI-SP) microcapsules were fabricated via high-voltage electrospraying technology. The results of preparation process optimization showed that the optimized preparation process parameters were 6% DX (w/v), feeding rate Q = 1 mL/h, voltage U = 15 kV, and receiving distance H = 15 cm. When the content of WPI (w/v) was 4–8%, the average diameter of the as-prepared microcapsules was no more than 45 μm, and the loading rate for SP ranged from ~46% to ~37%. The DX-WPI-SP microcapsules displayed excellent antioxidant capacity. The thermal stability of the microencapsulated SP was improved, which was attributed to the protective effects of the wall materials for SP. The release performance was investigated to disclose the sustained-release capacity of the carrier under different pH values and an in-vitro-simulated digestion environment. The digested microcapsule solution showed negligible influence on the cellular cytotoxicity of Caco-2 cells. Overall, our work provides a facile strategy of electrospraying microcapsules for the functional encapsulation of SP and witnesses a broad prospect that the DX-WPI-SP microcapsules can exhibit great potential in the food processing field.
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spelling pubmed-100009932023-03-11 Electrospray-Assisted Fabrication of Dextran–Whey Protein Isolation Microcapsules for the Encapsulation of Selenium-Enriched Peptide He, Jiangling Wang, Zhenyu Wei, Lingfeng Ye, Yuanyuan Din, Zia-ud Zhou, Jiaojiao Cong, Xin Cheng, Shuiyuan Cai, Jie Foods Article Selenium-enriched peptide (SP, selenopeptide) is an excellent organic selenium supplement that has attracted increasing attention due to its superior physiological effects. In this study, dextran–whey protein isolation–SP (DX-WPI-SP) microcapsules were fabricated via high-voltage electrospraying technology. The results of preparation process optimization showed that the optimized preparation process parameters were 6% DX (w/v), feeding rate Q = 1 mL/h, voltage U = 15 kV, and receiving distance H = 15 cm. When the content of WPI (w/v) was 4–8%, the average diameter of the as-prepared microcapsules was no more than 45 μm, and the loading rate for SP ranged from ~46% to ~37%. The DX-WPI-SP microcapsules displayed excellent antioxidant capacity. The thermal stability of the microencapsulated SP was improved, which was attributed to the protective effects of the wall materials for SP. The release performance was investigated to disclose the sustained-release capacity of the carrier under different pH values and an in-vitro-simulated digestion environment. The digested microcapsule solution showed negligible influence on the cellular cytotoxicity of Caco-2 cells. Overall, our work provides a facile strategy of electrospraying microcapsules for the functional encapsulation of SP and witnesses a broad prospect that the DX-WPI-SP microcapsules can exhibit great potential in the food processing field. MDPI 2023-02-27 /pmc/articles/PMC10000993/ /pubmed/36900527 http://dx.doi.org/10.3390/foods12051008 Text en © 2023 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
He, Jiangling
Wang, Zhenyu
Wei, Lingfeng
Ye, Yuanyuan
Din, Zia-ud
Zhou, Jiaojiao
Cong, Xin
Cheng, Shuiyuan
Cai, Jie
Electrospray-Assisted Fabrication of Dextran–Whey Protein Isolation Microcapsules for the Encapsulation of Selenium-Enriched Peptide
title Electrospray-Assisted Fabrication of Dextran–Whey Protein Isolation Microcapsules for the Encapsulation of Selenium-Enriched Peptide
title_full Electrospray-Assisted Fabrication of Dextran–Whey Protein Isolation Microcapsules for the Encapsulation of Selenium-Enriched Peptide
title_fullStr Electrospray-Assisted Fabrication of Dextran–Whey Protein Isolation Microcapsules for the Encapsulation of Selenium-Enriched Peptide
title_full_unstemmed Electrospray-Assisted Fabrication of Dextran–Whey Protein Isolation Microcapsules for the Encapsulation of Selenium-Enriched Peptide
title_short Electrospray-Assisted Fabrication of Dextran–Whey Protein Isolation Microcapsules for the Encapsulation of Selenium-Enriched Peptide
title_sort electrospray-assisted fabrication of dextran–whey protein isolation microcapsules for the encapsulation of selenium-enriched peptide
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10000993/
https://www.ncbi.nlm.nih.gov/pubmed/36900527
http://dx.doi.org/10.3390/foods12051008
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