Lion's Mane, Yamabushitake · 2025 · Journal Article
High relevanceStructural Characterization and Gastrointestinal Fate of a High-Molecular-Weight Hericium erinaceus Polysaccharide during Digestion and Fermentation.
Hericium erinaceus
Key points
- This study systematically isolated a high-molecular-weight polysaccharide (HHEP; 9.14 × 10 3 kDa) from Hericium erinaceus, consisting predominantly of glucose (59.16% ± 0.09%), galactose (26.29% ± 0.59%), and mannose (5.69% ± 0.58%)
- Through an in vitro simulated gastrointestinal digestion and colonic fermentation model, the HHEP demonstrated remarkable resistance to digestive enzymes and gastric acid hydrolysis
- However, it was effectively utilized by gut microbiota during fermentation
- Detailed monitoring indicated an initial cleavage of glycosidic bonds, accompanied by a pH decrease and the formation of high-molecular-weight fragments, followed by progressive microbial degradation
- Furthermore, fermentation supernatants from early fermentation stages─when larger fragments prevailed─induced immune responses in RAW 264.7 macrophages
- These results demonstrate the digestive stability and prebiotic potential of HHEP, highlighting its role as a gut-microbiota-targeting ingredient with structure-dependent immunomodulatory properties
Metadata-grounded summary
Citation abstract
This study systematically isolated a high-molecular-weight polysaccharide (HHEP; 9.14 × 10 3 kDa) from Hericium erinaceus, consisting predominantly of glucose (59.16% ± 0.09%), galactose (26.29% ± 0.59%), and mannose (5.69% ± 0.58%). Through an in vitro simulated gastrointestinal digestion and colonic fermentation model, the HHEP demonstrated remarkable resistance to digestive enzymes and gastric acid hydrolysis. However, it was effectively utilized by gut microbiota during fermentation. Detailed monitoring indicated an initial cleavage of glycosidic bonds, accompanied by a pH decrease and the formation of high-molecular-weight fragments, followed by progressive microbial degradation. Compared with inulin, HHEP selectively enriched beneficial genera, notably, Prevotella and Akkermansia. Furthermore, fermentation supernatants from early fermentation stages─when larger fragments prevailed─induced immune responses in RAW 264.7 macrophages. These results demonstrate the digestive stability and prebiotic potential of HHEP, highlighting its role as a gut-microbiota-targeting ingredient with structure-dependent immunomodulatory properties.
Citation
Fu C, Ye K, Qiu Z, Ma G, Chen S, Xiao H (2025). Structural Characterization and Gastrointestinal Fate of a High-Molecular-Weight Hericium erinaceus Polysaccharide during Digestion and Fermentation. Journal of agricultural and food chemistry https://doi.org/10.1021/acs.jafc.5c11565 PMID: 41247222
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