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Improved Viability of Probiotics via Microencapsulation in Whey-Protein-Isolate-Octenyl-Succinic-Anhydride-Starch-Complex Coacervates

The aim of this study was to microencapsulate probiotic bacteria (Lactobacillus acidophilus 11073) using whey-protein-isolate (WPI)–octenyl-succinic-anhydride-starch (OSA-starch)-complex coacervates and to investigate the effects on probiotic bacterial viability during spray drying, simulated gastro...

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Autores principales: Liu, Qingqing, Lin, Chutian, Yang, Xue, Wang, Shuwen, Yang, Yunting, Liu, Yanting, Xiong, Mingming, Xie, Yisha, Bao, Qingbin, Yuan, Yongjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10420251/
https://www.ncbi.nlm.nih.gov/pubmed/37570702
http://dx.doi.org/10.3390/molecules28155732
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author Liu, Qingqing
Lin, Chutian
Yang, Xue
Wang, Shuwen
Yang, Yunting
Liu, Yanting
Xiong, Mingming
Xie, Yisha
Bao, Qingbin
Yuan, Yongjun
author_facet Liu, Qingqing
Lin, Chutian
Yang, Xue
Wang, Shuwen
Yang, Yunting
Liu, Yanting
Xiong, Mingming
Xie, Yisha
Bao, Qingbin
Yuan, Yongjun
author_sort Liu, Qingqing
collection PubMed
description The aim of this study was to microencapsulate probiotic bacteria (Lactobacillus acidophilus 11073) using whey-protein-isolate (WPI)–octenyl-succinic-anhydride-starch (OSA-starch)-complex coacervates and to investigate the effects on probiotic bacterial viability during spray drying, simulated gastrointestinal digestion, thermal treatment and long-term storage. The optimum mixing ratio and pH for the preparation of WPI-OSA-starch-complex coacervates were determined to be 2:1 and 4.0, respectively. The combination of WPI and OSA starch under these conditions produced microcapsules with smoother surfaces and more compact structures than WPI-OSA starch alone, due to the electrostatic attraction between WPI and OSA starch. As a result, WPI-OSA-starch microcapsules showed significantly (p < 0.05) higher viability (95.94 ± 1.64%) after spray drying and significantly (p < 0.05) better protection during simulated gastrointestinal digestion, heating (65 °C/30 min and 75 °C/10 min) and storage (4/25 °C for 12 weeks) than WPI-OSA-starch microcapsules. These results demonstrated that WPI-OSA-starch-complex coacervates have excellent potential as a novel wall material for probiotic microencapsulation.
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spelling pubmed-104202512023-08-12 Improved Viability of Probiotics via Microencapsulation in Whey-Protein-Isolate-Octenyl-Succinic-Anhydride-Starch-Complex Coacervates Liu, Qingqing Lin, Chutian Yang, Xue Wang, Shuwen Yang, Yunting Liu, Yanting Xiong, Mingming Xie, Yisha Bao, Qingbin Yuan, Yongjun Molecules Article The aim of this study was to microencapsulate probiotic bacteria (Lactobacillus acidophilus 11073) using whey-protein-isolate (WPI)–octenyl-succinic-anhydride-starch (OSA-starch)-complex coacervates and to investigate the effects on probiotic bacterial viability during spray drying, simulated gastrointestinal digestion, thermal treatment and long-term storage. The optimum mixing ratio and pH for the preparation of WPI-OSA-starch-complex coacervates were determined to be 2:1 and 4.0, respectively. The combination of WPI and OSA starch under these conditions produced microcapsules with smoother surfaces and more compact structures than WPI-OSA starch alone, due to the electrostatic attraction between WPI and OSA starch. As a result, WPI-OSA-starch microcapsules showed significantly (p < 0.05) higher viability (95.94 ± 1.64%) after spray drying and significantly (p < 0.05) better protection during simulated gastrointestinal digestion, heating (65 °C/30 min and 75 °C/10 min) and storage (4/25 °C for 12 weeks) than WPI-OSA-starch microcapsules. These results demonstrated that WPI-OSA-starch-complex coacervates have excellent potential as a novel wall material for probiotic microencapsulation. MDPI 2023-07-28 /pmc/articles/PMC10420251/ /pubmed/37570702 http://dx.doi.org/10.3390/molecules28155732 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
Liu, Qingqing
Lin, Chutian
Yang, Xue
Wang, Shuwen
Yang, Yunting
Liu, Yanting
Xiong, Mingming
Xie, Yisha
Bao, Qingbin
Yuan, Yongjun
Improved Viability of Probiotics via Microencapsulation in Whey-Protein-Isolate-Octenyl-Succinic-Anhydride-Starch-Complex Coacervates
title Improved Viability of Probiotics via Microencapsulation in Whey-Protein-Isolate-Octenyl-Succinic-Anhydride-Starch-Complex Coacervates
title_full Improved Viability of Probiotics via Microencapsulation in Whey-Protein-Isolate-Octenyl-Succinic-Anhydride-Starch-Complex Coacervates
title_fullStr Improved Viability of Probiotics via Microencapsulation in Whey-Protein-Isolate-Octenyl-Succinic-Anhydride-Starch-Complex Coacervates
title_full_unstemmed Improved Viability of Probiotics via Microencapsulation in Whey-Protein-Isolate-Octenyl-Succinic-Anhydride-Starch-Complex Coacervates
title_short Improved Viability of Probiotics via Microencapsulation in Whey-Protein-Isolate-Octenyl-Succinic-Anhydride-Starch-Complex Coacervates
title_sort improved viability of probiotics via microencapsulation in whey-protein-isolate-octenyl-succinic-anhydride-starch-complex coacervates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10420251/
https://www.ncbi.nlm.nih.gov/pubmed/37570702
http://dx.doi.org/10.3390/molecules28155732
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