Construction and Performance Evaluation of a Bifidobacterium Delivery System Based on TBP-SA Pickering Emulsion Gels

An emulsion gel (EG-B) was fabricated through in situ calcium crosslinking of Pickering emulsions stabilized by tartary buckwheat protein–sodium alginate (TBP-SA) nanocomplexes for the encapsulation and delivery of Bifidobacterium longum. Control samples, including free bacteria (Free-B), Pickering emulsions (PE-B), and oil-free hydrogels (HG-B), were used to assess encapsulation efficiency, microstructure, rheological properties, thermal stability, dilution stability, gastrointestinal resistance, storage stability, and colonic adhesion of EG-B. The EG-B exhibited a dual structure comprising a compact Pickering interfacial membrane and a continuous calcium alginate gel network with solid-like rheology (G′>>G″) and viscosity of approximately 100 Pa·s, achieving 92.66% encapsulation efficiency. Viable counts exceeded 6 log CFU/g after pasteurization (72 °C, 15 s) and reached 6.12 log CFU/g post-simulated gastrointestinal digestion, significantly surpassing those of PE-B (5.12 log CFU/g) and HG-B (4.45 log CFU/g). Furthermore, EG-B displayed the highest viable retention during 14-day storage at 4 °C and 25 °C, along with a greater colonic adhesion efficiency (55.64%) compared to PE-B (47.09%) and HG-B (44.65%). The combination of interfacial stabilization and gel network formation provided by the TBP-SA complex presents a straightforward, food-grade strategy for probiotic delivery.

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Journal
Foods
Published
2026-09-30
DOI
https://doi.org/10.3390/foods15193502
Primary Topic
Probiotics and Fermented Foods
Type
article
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article

Construction and Performance Evaluation of a Bifidobacterium Delivery System Based on TBP-SA Pickering Emulsion Gels

Zunxi Huang, Xia Xu, Ding‐Tao Wu, Liang Zou et al.
Foods
Probiotics and Fermented Foods
article

Construction and Performance Evaluation of a Bifidobacterium Delivery System Based on TBP-SA Pickering Emulsion Gels

Zunxi Huang, Xia Xu, Ding‐Tao Wu, Liang Zou, Wei Li, Cao Yanan, Qian Zhao, Zhiqiang Yang, Lianxin Peng, Xueli Shen, Yu Song
article en

Abstract

An emulsion gel (EG-B) was fabricated through in situ calcium crosslinking of Pickering emulsions stabilized by tartary buckwheat protein–sodium alginate (TBP-SA) nanocomplexes for the encapsulation and delivery of Bifidobacterium longum. Control samples, including free bacteria (Free-B), Pickering emulsions (PE-B), and oil-free hydrogels (HG-B), were used to assess encapsulation efficiency, microstructure, rheological properties, thermal stability, dilution stability, gastrointestinal resistance, storage stability, and colonic adhesion of EG-B. The EG-B exhibited a dual structure comprising a compact Pickering interfacial membrane and a continuous calcium alginate gel network with solid-like rheology (G′>>G″) and viscosity of approximately 100 Pa·s, achieving 92.66% encapsulation efficiency. Viable counts exceeded 6 log CFU/g after pasteurization (72 °C, 15 s) and reached 6.12 log CFU/g post-simulated gastrointestinal digestion, significantly surpassing those of PE-B (5.12 log CFU/g) and HG-B (4.45 log CFU/g). Furthermore, EG-B displayed the highest viable retention during 14-day storage at 4 °C and 25 °C, along with a greater colonic adhesion efficiency (55.64%) compared to PE-B (47.09%) and HG-B (44.65%). The combination of interfacial stabilization and gel network formation provided by the TBP-SA complex presents a straightforward, food-grade strategy for probiotic delivery.

FoodsVol. 15(19)
Yunnan Normal University (CN), Sichuan Cancer Hospital (CN), Chengdu University (CN), Ministry of Agriculture and Rural Affairs (CN), Chengdu Agricultural College (CN)
Openalex Percentile: Top 15%
Probiotics and Fermented Foods
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