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Microencapsulation techniques and encapsulating materials influenced the shelf life and digestion release of vitamin E and isoflavones in soymilk powder
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Document Title
Microencapsulation techniques and encapsulating materials influenced the shelf life and digestion release of vitamin E and isoflavones in soymilk powder
Name from Authors Collection
Affiliations
Department of Food Science, Faculty of Science, Burapha University, Chonburi, Mueang, Thailand; National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA), Pathum Thani, Khlong Luang, Thailand; Department of Food Technology and Nutrition, Faculty of Technology, Mahasarakham University, Maha Sarakham, Kantharawichai, Thailand; Qualisud, CIRAD, Montpellier SupAgro, Université d’Avignon, Université de La Réunion, Université Montpellier, Montpellier, France; Department of Agro-Industry Technology and Management, Faculty of Digital Agro-Industry, King Mongkut’s University of Technology North Bangkok, Prachinburi, Thailand; Department of Innovation and Technology of Product Development, Faculty of Digital Agro- Industry, King Mongkut’s University of Technology North Bangkok, Prachinburi, Thailand; Department of Human Relations, Faculty of Humanities, Chiang Mai University, 239, Huay Kaew Road, Muang District, Chiang Mai, 50200, Thailand
Type
Article
Source Title
Scientific Reports
ISSN
20452322
Year
2025
Issue
1
Open Access
All Open Access; Gold Open Access; Green Open Access
Publisher
Nature Research
DOI
10.1038/s41598-025-95284-4
Abstract
Soymilk, due to its high-quality protein and isoflavones content, is widely consumed worldwide. Unfortunately, soymilk lacks the powerful antioxidant vitamin E. Encapsulation of vitamin E and isoflavones in soymilk powder is advantageous for malnourished consumers to meet the recommendation. This study aimed to evaluate the impact of different encapsulation techniques and encapsulating materials on the storage stability and bioaccessibility of vitamin E and isoflavones in soymilk powder. Freeze-drying and spray-drying methods were applied with various encapsulating materials prepared from different ratios of maltodextrin to Acacia gum (100:0, 60:40, 50:50, 40:60, and 0:100). The results indicated that a 40:60 ratio of maltodextrin and Acacia gum provided the highest stability for 24 h of soymilk emulsion under the studied conditions. The shelf-life prediction of soymilk powder increased by more than two weeks when stored at 0 °C compared to the storage at ambient temperature. Spray-drying and freeze-drying techniques effectively encapsulate vitamin E and isoflavones within core microcapsules. Especially, freeze-drying process helps to prevent degradation during storage and allows for controlled release of the bioactive compounds during in-vitro digestion. Encapsulation efficiency of isoflavones and vitamin E for all formulation ranged from 80.9 ± 0.01% to 83.5 ± 0.20%, respectively. The highest vitamin E and isoflavones bioaccessibility of encapsulated product increased by up to 4.4-fold and 1.7-fold in the 60:40 formulations. Consuming 20 g of encapsulated vitamin E and 170 g of encapsulated isoflavones daily would be sufficient to meet the recommended intake. © The Author(s) 2025.
Keyword
Encapsulation | In-vitro digestion | Isoflavones | Shelf-life prediction | Soymilk powder | vitamin E
License
CC BY-NC-ND
Rights
Authors
Publication Source
Scopus
Publication Source
Scopus