Regulatory mechanism of leucine-amidated pectin on the gel properties of shrimp surimi as a salt substitute

To address gel deterioration in low-salt shrimp surimi, leucine-amidated pectin (Leu-Pe, 21.89% grafting degree) was synthesized via enzymatic modification. Leu-Pe (4.0%) showed approximately 100-fold higher apparent viscosity than native pectin and formed an elasticity-dominated network. In low-salt surimi, Leu-Pe enhanced gel properties: hardness, chewiness, and gel strength reached 6.72 N, 17.77 mJ, and 9.97 N·mm, respectively, while water-holding capacity (WHC) peaked at 97.16%. Mechanistic analysis showed that Leu-Pe promoted ordered β-sheet formation and disulfide cross-linking, reducing free thiols to 254.93 μmol/g. Microstructural observations confirmed a compact filamentous network driven by hydrophobic anchoring and hydrogen bonding, which restricted water migration. These findings demonstrate that Leu-Pe provides structural reinforcement and superior water retention, offering an effective strategy for developing healthier low-salt surimi products.

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Journal
Food Chemistry X
Published
2026-09-14
DOI
https://doi.org/10.1016/j.fochx.2026.104463
Primary Topic
Polysaccharides and Plant Cell Walls
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article
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article

Regulatory mechanism of leucine-amidated pectin on the gel properties of shrimp surimi as a salt substitute

Yilan Wang, Bingli Wang, Jingna Liu, Jiaofen Lin et al.
Food Chemistry X
Polysaccharides and Plant Cell Walls
article

Regulatory mechanism of leucine-amidated pectin on the gel properties of shrimp surimi as a salt substitute

Yilan Wang, Bingli Wang, Jingna Liu, Jiaofen Lin, Yiya Li, Qiong Zhang, Meng Yang, Peng Fei, Fang Cao
article en

Abstract

To address gel deterioration in low-salt shrimp surimi, leucine-amidated pectin (Leu-Pe, 21.89% grafting degree) was synthesized via enzymatic modification. Leu-Pe (4.0%) showed approximately 100-fold higher apparent viscosity than native pectin and formed an elasticity-dominated network. In low-salt surimi, Leu-Pe enhanced gel properties: hardness, chewiness, and gel strength reached 6.72 N, 17.77 mJ, and 9.97 N·mm, respectively, while water-holding capacity (WHC) peaked at 97.16%. Mechanistic analysis showed that Leu-Pe promoted ordered β-sheet formation and disulfide cross-linking, reducing free thiols to 254.93 μmol/g. Microstructural observations confirmed a compact filamentous network driven by hydrophobic anchoring and hydrogen bonding, which restricted water migration. These findings demonstrate that Leu-Pe provides structural reinforcement and superior water retention, offering an effective strategy for developing healthier low-salt surimi products.

Food Chemistry XVol. 39
Fujian Fisheries Research Institute (CN), College of Marin (US), Minnan Normal University (CN)
Clean water and sanitation
Openalex Percentile: Top 13%
Polysaccharides and Plant Cell Walls
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Regulatory mechanism of leucine-amidated pectin on the gel properties of shrimp surimi as a salt substitute — Yilan Wang, Bingli Wang, et al. · Food Chemistry X (2026) | TGRS Research Map | TGRS