Digestive Fate of a Seaweed-Yak Meat Protein–Polysaccharide Matrix under Simulated Elderly Gastrointestinal Dysfunction: Nutrient Release, Antioxidant Response, and Peptidomic Remodeling

Abstract Age-related gastrointestinal dysfunction may alter the digestive fate of composite foods. Using a static in vitro model, we compared a seaweed-yak meat matrix under four simulated older-adult gastrointestinal conditions: normal gastric and intestinal function, isolated intestinal dysfunction, isolated gastric dysfunction, and combined dysfunction. Intestinal digestion decreased particle size from 2325.03 nm to 731.74–1088.07 nm and significantly increased apparent protein digestibility from 9.72–29.05% to 73.27–83.73% (P < 0.05). Combined dysfunction significantly reduced terminal digestibility to 73.27% compared with 83.73% under normal conditions (P < 0.05) and retained larger, heterogeneous aggregates. Peptides of 801–1400 Da predominated (45.5–45.8%), while 18,499 of 19,681 peptides (94%) were shared among groups. Peptides uniquely assigned to yak proteins accounted for 97.039–97.466% of normalized precursor-ion abundance, whereas seaweed-only peptides accounted for 0.1078–0.1241%. Peptide clustering indicated abundance remodeling within a conserved, yak-dominated pool, with terminal profiles more strongly associated with gastric than isolated intestinal dysfunction.

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Publication Details

Journal
Journal of Agricultural and Food Chemistry
Published
2026-09-17
DOI
https://doi.org/10.1021/acs.jafc.6c08704
Primary Topic
Protein Hydrolysis and Bioactive Peptides
Type
article
Field-Weighted Citation Impact
0.00

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article

Digestive Fate of a Seaweed-Yak Meat Protein–Polysaccharide Matrix under Simulated Elderly Gastrointestinal Dysfunction: Nutrient Release, Antioxidant Response, and Peptidomic Remodeling

Saijie Ma, Runze Li, Ge Han, Hang Qi et al.
Journal of Agricultural and Food Chemistry
Protein Hydrolysis and Bioactive Peptides
article

Digestive Fate of a Seaweed-Yak Meat Protein–Polysaccharide Matrix under Simulated Elderly Gastrointestinal Dysfunction: Nutrient Release, Antioxidant Response, and Peptidomic Remodeling

Saijie Ma, Runze Li, Ge Han, Hang Qi, Yujiao Wang, Yicheng Guo, Liwen Fan
article en

Abstract

Abstract Age-related gastrointestinal dysfunction may alter the digestive fate of composite foods. Using a static in vitro model, we compared a seaweed-yak meat matrix under four simulated older-adult gastrointestinal conditions: normal gastric and intestinal function, isolated intestinal dysfunction, isolated gastric dysfunction, and combined dysfunction. Intestinal digestion decreased particle size from 2325.03 nm to 731.74–1088.07 nm and significantly increased apparent protein digestibility from 9.72–29.05% to 73.27–83.73% (P < 0.05). Combined dysfunction significantly reduced terminal digestibility to 73.27% compared with 83.73% under normal conditions (P < 0.05) and retained larger, heterogeneous aggregates. Peptides of 801–1400 Da predominated (45.5–45.8%), while 18,499 of 19,681 peptides (94%) were shared among groups. Peptides uniquely assigned to yak proteins accounted for 97.039–97.466% of normalized precursor-ion abundance, whereas seaweed-only peptides accounted for 0.1078–0.1241%. Peptide clustering indicated abundance remodeling within a conserved, yak-dominated pool, with terminal profiles more strongly associated with gastric than isolated intestinal dysfunction.

Journal of Agricultural and Food Chemistry
Dalian Polytechnic University (CN)
People's Government of Liaoning Province, Department of Education of Liaoning Province, National Key Research and Development Program of China
Life below water
Openalex Percentile: Top 18%
Protein Hydrolysis and Bioactive Peptides
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Digestive Fate of a Seaweed-Yak Meat Protein–Polysaccharide Matrix under Simulated Elderly Gastrointestinal Dysfunction: Nutrient Release, Antioxidant Response, and Peptidomic Remodeling — Saijie Ma, Runze Li, et al. · Journal of Agricultural and Food Chemistry (2026) | TGRS Research Map | TGRS