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King Oyster, Eryngii · 2022 · Research Article

High relevance

Isolation, Structural Characterization, and Hypoglycemic Activities In Vitro of Polysaccharides from Pleurotus eryngii.

Pleurotus eryngii

Immune supportGut & microbiome
SpeciesKing Oyster, Eryngii
JournalMolecules (Basel, Switzerland)
Year2022

Key points

  • Pleurotus eryngii (PE) is an edible mushroom with high nutritional value
  • This study mainly focused on the chemical characterization and biological activities of PEPs, which were separated into two fractions (named WPS and P-1)
  • WPS is mainly dominated by β -glycosidic bonds and contains α -glycosidic bonds, and P-1 only contains α -glycosidic bonds
  • The result of GC indicated that two the fractions were composed of rhamnose, arabinose, xylose, mannose, glucose, and galactose, with a ratio of 0.35:0.24:0.45:0.24:28.78:1.10 for WPS and 0.95:0.64:0.66:1.84:60.69:0.67 for P-1
  • The advanced structure studies indicated that the two fractions had no triple-helical structure, where WPS had a dense structure and P-1 had a loose structure
  • In addition, the antioxidant activity of WPS surpassed P-1, and the two fractions also exhibited a high hypoglycemic activity via inhibiting α -glycosidase activities and promoting the expression of PI3K-AKT signaling pathway based on in vitro assay and cell experiments

Metadata-grounded summary

Citation abstract

Pleurotus eryngii (PE) is an edible mushroom with high nutritional value. Pleurotus eryngii polysaccharides (PEPs) are one of the main active ingredients and manifest a great variety of biological activities. This study mainly focused on the chemical characterization and biological activities of PEPs, which were separated into two fractions (named WPS and P-1). WPS is mainly dominated by β -glycosidic bonds and contains α -glycosidic bonds, and P-1 only contains α -glycosidic bonds. The molecular weights of WPS and P-1 were 4.5 × 10 5 Da and 2.2 × 10 4 Da. The result of GC indicated that two the fractions were composed of rhamnose, arabinose, xylose, mannose, glucose, and galactose, with a ratio of 0.35:0.24:0.45:0.24:28.78:1.10 for WPS and 0.95:0.64:0.66:1.84:60.69:0.67 for P-1. The advanced structure studies indicated that the two fractions had no triple-helical structure, where WPS had a dense structure and P-1 had a loose structure. In addition, the antioxidant activity of WPS surpassed P-1, and the two fractions also exhibited a high hypoglycemic activity via inhibiting α -glycosidase activities and promoting the expression of PI3K-AKT signaling pathway based on in vitro assay and cell experiments.

Citation

Gong P, Long H, Guo Y, Wang S, Chen F, Chen X (2022). Isolation, Structural Characterization, and Hypoglycemic Activities In Vitro of Polysaccharides from Pleurotus eryngii. Molecules (Basel, Switzerland) https://doi.org/10.3390/molecules27207140 PMID: 36296732

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