Development of soy protein isolate-based orally disintegrating films: The dual role of β-Cyclodextrin in enhancing disintegration performance and ergothioneine stability

Plant protein-based orally disintegrating films (ODFs) are promising but limited by slow disintegration and poor stability of incorporated actives. This study developed ergothioneine (EGT)-loaded soy protein isolate (SPI) ODFs and investigated the bifunctional regulatory effects of β-CD. β-CD exerts a dual role as both a structural modulator and a stability-enhancing additive. At 10% (w/w) dosage, β-CD remodeled the SPI network into a more hydrophilic structure, shortening in vitro disintegration time to 15.46 s and enhancing tensile strength to 12.15 MPa. Furthermore, β-CD incorporation was associated with improved retention of total antioxidant activity in EGT-loaded films during accelerated storage, likely attributable to reduced oxidative exposure via intermolecular interactions within the film matrix. Excessive β-CD (15%, w /w) induced phase separation and crystallization, impairing mechanical integrity and the observed antioxidant activity retention benefit. This work provides a strategy for developing plant protein-based oral delivery vehicles for sensitive nutraceuticals.

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Publication Details

Journal
Food Chemistry X
Published
2026-09-16
DOI
https://doi.org/10.1016/j.fochx.2026.104451
Primary Topic
Proteins in Food Systems
Type
article
Field-Weighted Citation Impact
0.00

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article

Development of soy protein isolate-based orally disintegrating films: The dual role of β-Cyclodextrin in enhancing disintegration performance and ergothioneine stability

Zengwang Guo, Yachao Tian, Yaxin Zhou, Chanting Lv et al.
Food Chemistry X
Proteins in Food Systems
article

Development of soy protein isolate-based orally disintegrating films: The dual role of β-Cyclodextrin in enhancing disintegration performance and ergothioneine stability

Zengwang Guo, Yachao Tian, Yaxin Zhou, Chanting Lv, Zhongjiang Wang, Xiaoyu Du, Shutao Guo
article en

Abstract

Plant protein-based orally disintegrating films (ODFs) are promising but limited by slow disintegration and poor stability of incorporated actives. This study developed ergothioneine (EGT)-loaded soy protein isolate (SPI) ODFs and investigated the bifunctional regulatory effects of β-CD. β-CD exerts a dual role as both a structural modulator and a stability-enhancing additive. At 10% (w/w) dosage, β-CD remodeled the SPI network into a more hydrophilic structure, shortening in vitro disintegration time to 15.46 s and enhancing tensile strength to 12.15 MPa. Furthermore, β-CD incorporation was associated with improved retention of total antioxidant activity in EGT-loaded films during accelerated storage, likely attributable to reduced oxidative exposure via intermolecular interactions within the film matrix. Excessive β-CD (15%, w /w) induced phase separation and crystallization, impairing mechanical integrity and the observed antioxidant activity retention benefit. This work provides a strategy for developing plant protein-based oral delivery vehicles for sensitive nutraceuticals.

Food Chemistry XVol. 39
Northeast Agricultural University (CN), Ingenierie des Materiaux polymeres (FR)
National Natural Science Foundation of China
Zero hunger
Openalex Percentile: Top 14%
Proteins in Food Systems
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Development of soy protein isolate-based orally disintegrating films: The dual role of β-Cyclodextrin in enhancing disintegration performance and ergothioneine stability — Zengwang Guo, Yachao Tian, et al. · Food Chemistry X (2026) | TGRS Research Map | TGRS