Emulsion Gel Stabilized by Young Bamboo Culm (Phyllostachys edulis) Fiber–Soy Protein Composite: Ball-Milling Effects on Stability and Lipid Digestion

This study aimed to valorize discarded moso bamboo (Phyllostachys edulis) culm tips, a fiber-rich food processing by-product, into a clean-label structuring ingredient with controlled lipid digestibility. Bamboo culm tip insoluble dietary fiber (BIDF) was ball-milled for 0 to 12 h and combined with soy protein isolate (SPI) to stabilize camellia oil-in-water fiber-network-stabilized emulsions at an oil fraction of 0.7; lipolysis was evaluated under INFOGEST 2.0. Ball milling for 9 h reduced BIDF to sub-10 μm particles and raised its three-phase contact angle from approximately 98° to 105° while preserving the cellulose I crystal form, and this milled fiber (SM-BIDF) was selected for emulsification. At 0.1% (w/v) SM-BIDF, emulsions showed the smallest droplet size (8.68 μm, vs. 18.4 μm for SPI-only), the highest |ζ|-potential (53.23 mV), and a gel network that remained stable for 14 days at 4 °C; this formulation also released the lowest free fatty acids (24.76% at 120 min), substantially below SPI-only controls. A concentration-dependent three-stage mechanism of interfacial reinforcement, network optimization, and excessive weakening was proposed to explain these observations. These results demonstrate that ball-milled bamboo culm tip IDF combined with SPI provides a sustainable dual-functional emulsifier that simultaneously stabilizes emulsions and retards lipid digestion.

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Publication Details

Journal
Foods
Published
2026-09-28
DOI
https://doi.org/10.3390/foods15193460
Primary Topic
Proteins in Food Systems
Type
article
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article

Emulsion Gel Stabilized by Young Bamboo Culm (Phyllostachys edulis) Fiber–Soy Protein Composite: Ball-Milling Effects on Stability and Lipid Digestion

Shuang Bi, Chenlu Luo, Xinuo Song, Xian Cui et al.
Foods
Proteins in Food Systems
article

Emulsion Gel Stabilized by Young Bamboo Culm (Phyllostachys edulis) Fiber–Soy Protein Composite: Ball-Milling Effects on Stability and Lipid Digestion

Shuang Bi, Chenlu Luo, Xinuo Song, Xian Cui, Zixuan Zhou
article en

Abstract

This study aimed to valorize discarded moso bamboo (Phyllostachys edulis) culm tips, a fiber-rich food processing by-product, into a clean-label structuring ingredient with controlled lipid digestibility. Bamboo culm tip insoluble dietary fiber (BIDF) was ball-milled for 0 to 12 h and combined with soy protein isolate (SPI) to stabilize camellia oil-in-water fiber-network-stabilized emulsions at an oil fraction of 0.7; lipolysis was evaluated under INFOGEST 2.0. Ball milling for 9 h reduced BIDF to sub-10 μm particles and raised its three-phase contact angle from approximately 98° to 105° while preserving the cellulose I crystal form, and this milled fiber (SM-BIDF) was selected for emulsification. At 0.1% (w/v) SM-BIDF, emulsions showed the smallest droplet size (8.68 μm, vs. 18.4 μm for SPI-only), the highest |ζ|-potential (53.23 mV), and a gel network that remained stable for 14 days at 4 °C; this formulation also released the lowest free fatty acids (24.76% at 120 min), substantially below SPI-only controls. A concentration-dependent three-stage mechanism of interfacial reinforcement, network optimization, and excessive weakening was proposed to explain these observations. These results demonstrate that ball-milled bamboo culm tip IDF combined with SPI provides a sustainable dual-functional emulsifier that simultaneously stabilizes emulsions and retards lipid digestion.

FoodsVol. 15(19)
Nanchang University (CN), Beijing Technology and Business University (CN)
Responsible consumption and production
Openalex Percentile: Top 14%
Proteins in Food Systems
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