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Dry Nutrition Delivery System Based on Defatted Soybean Particles and Its Application with β-Carotene

Many nutrition delivery systems (NDSs) have been developed for the encapsulation, protection, and delivery of bioactive compounds, such as β-carotene. Most of those systems were prepared in solution, which is inconvenient for transportation and storage in the food industry. In the present work, we c...

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Autores principales: Wu, Chunyu, Ouyang, Xuewen, Zhou, Xiaoya, Li, Xiaofei, Li, Hongbo, Li, Wenying, Wan, Cuixiang, Yu, Bo, El-Sohaimy, Sobhy, Wu, Zhihua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145488/
https://www.ncbi.nlm.nih.gov/pubmed/37110663
http://dx.doi.org/10.3390/molecules28083429
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author Wu, Chunyu
Ouyang, Xuewen
Zhou, Xiaoya
Li, Xiaofei
Li, Hongbo
Li, Wenying
Wan, Cuixiang
Yu, Bo
El-Sohaimy, Sobhy
Wu, Zhihua
author_facet Wu, Chunyu
Ouyang, Xuewen
Zhou, Xiaoya
Li, Xiaofei
Li, Hongbo
Li, Wenying
Wan, Cuixiang
Yu, Bo
El-Sohaimy, Sobhy
Wu, Zhihua
author_sort Wu, Chunyu
collection PubMed
description Many nutrition delivery systems (NDSs) have been developed for the encapsulation, protection, and delivery of bioactive compounds, such as β-carotene. Most of those systems were prepared in solution, which is inconvenient for transportation and storage in the food industry. In the present work, we constructed an environmentally friendly dry NDS based on defatted soybean particles (DSPs) by milling a β-carotene-DSP mixture. The loading efficiency of the NDS reached 89.0%, and the cumulative release rate decreased from 15.1% (free β-carotene) to 6.0% within 8 h. The stability of β-carotene in the dry NDS was found to have increased in a thermogravimetric analysis. Stored for 14 days at 55 °C or under UV irradiation, the retaining rates of β-carotene in the NDS increased to 50.7% and 63.6%, respectively, while they were 24.2% and 54.6% for the free samples. The bioavailability of β-carotene was improved by the NDS too. The apparent permeability coefficient of the NDS reached 1.37 × 10(−6) cm/s, which is 12 times that of free β-carotene (0.11 × 10(−6) cm/s). Besides being environmentally friendly, the dry NDS can facilitate carriage, transportation, or storage in the food industry, and similar to other NDSs, it improves the stability and bioavailability of nutrients.
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spelling pubmed-101454882023-04-29 Dry Nutrition Delivery System Based on Defatted Soybean Particles and Its Application with β-Carotene Wu, Chunyu Ouyang, Xuewen Zhou, Xiaoya Li, Xiaofei Li, Hongbo Li, Wenying Wan, Cuixiang Yu, Bo El-Sohaimy, Sobhy Wu, Zhihua Molecules Communication Many nutrition delivery systems (NDSs) have been developed for the encapsulation, protection, and delivery of bioactive compounds, such as β-carotene. Most of those systems were prepared in solution, which is inconvenient for transportation and storage in the food industry. In the present work, we constructed an environmentally friendly dry NDS based on defatted soybean particles (DSPs) by milling a β-carotene-DSP mixture. The loading efficiency of the NDS reached 89.0%, and the cumulative release rate decreased from 15.1% (free β-carotene) to 6.0% within 8 h. The stability of β-carotene in the dry NDS was found to have increased in a thermogravimetric analysis. Stored for 14 days at 55 °C or under UV irradiation, the retaining rates of β-carotene in the NDS increased to 50.7% and 63.6%, respectively, while they were 24.2% and 54.6% for the free samples. The bioavailability of β-carotene was improved by the NDS too. The apparent permeability coefficient of the NDS reached 1.37 × 10(−6) cm/s, which is 12 times that of free β-carotene (0.11 × 10(−6) cm/s). Besides being environmentally friendly, the dry NDS can facilitate carriage, transportation, or storage in the food industry, and similar to other NDSs, it improves the stability and bioavailability of nutrients. MDPI 2023-04-13 /pmc/articles/PMC10145488/ /pubmed/37110663 http://dx.doi.org/10.3390/molecules28083429 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 Communication
Wu, Chunyu
Ouyang, Xuewen
Zhou, Xiaoya
Li, Xiaofei
Li, Hongbo
Li, Wenying
Wan, Cuixiang
Yu, Bo
El-Sohaimy, Sobhy
Wu, Zhihua
Dry Nutrition Delivery System Based on Defatted Soybean Particles and Its Application with β-Carotene
title Dry Nutrition Delivery System Based on Defatted Soybean Particles and Its Application with β-Carotene
title_full Dry Nutrition Delivery System Based on Defatted Soybean Particles and Its Application with β-Carotene
title_fullStr Dry Nutrition Delivery System Based on Defatted Soybean Particles and Its Application with β-Carotene
title_full_unstemmed Dry Nutrition Delivery System Based on Defatted Soybean Particles and Its Application with β-Carotene
title_short Dry Nutrition Delivery System Based on Defatted Soybean Particles and Its Application with β-Carotene
title_sort dry nutrition delivery system based on defatted soybean particles and its application with β-carotene
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10145488/
https://www.ncbi.nlm.nih.gov/pubmed/37110663
http://dx.doi.org/10.3390/molecules28083429
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