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King Oyster, Eryngii · 2025 · Research Article

High relevance

The Performance of Pleurotus eryngii β-Glucans on Protein Digestion and the Release of Free Amino Acids in the Bloodstream of Obese Adults.

Pleurotus eryngii

Energy & fatigueGut & microbiome
SpeciesKing Oyster, Eryngii
JournalFoods (Basel, Switzerland)
Year2025

Key points

  • Its potential to ameliorate postprandial glycemia and regulate appetite at the postprandial state has been previously shown
  • However, its effect on protein digestion remains unexplored
  • We aimed to investigate the effect of baked P. eryngii with a known β-glucan content (4.5 g) on plasma free amino acids of patients with central obesity and metabolic abnormalities at a postprandial state
  • In this acute, randomized controlled cross-over study, thirteen healthy male volunteers consumed one meal that was prepared with P. eryngii and one control meal; each meal was separated by one month
  • The area under the curve with respect to increase (AUCi) was computed, and the AUCi for aromatic amino acids was found to be higher after the consumption of the control meal compared to the P. eryngii meal ( p = 0.027 for phenylalanine, p = 0.008 for tyrosine, and p = 0.003 for tryptophan)
  • The above novel findings suggest that the β-glucans present in P. eryngii mushrooms are potential modulators of AA release into the bloodstream

Metadata-grounded summary

Citation abstract

Pleurotus eryngii is an edible mushroom with previously characterized β-glucans. Its potential to ameliorate postprandial glycemia and regulate appetite at the postprandial state has been previously shown. However, its effect on protein digestion remains unexplored. We aimed to investigate the effect of baked P. eryngii with a known β-glucan content (4.5 g) on plasma free amino acids of patients with central obesity and metabolic abnormalities at a postprandial state. In this acute, randomized controlled cross-over study, thirteen healthy male volunteers consumed one meal that was prepared with P. eryngii and one control meal; each meal was separated by one month. Blood was collected, and plasma was isolated at different timepoints before and after the consumption. Gas chromatography-mass spectrometry was used to quantify 24 free amino acids in the plasma samples. The area under the curve with respect to increase (AUCi) was computed, and the AUCi for aromatic amino acids was found to be higher after the consumption of the control meal compared to the P. eryngii meal ( p = 0.027 for phenylalanine, p = 0.008 for tyrosine, and p = 0.003 for tryptophan). The above novel findings suggest that the β-glucans present in P. eryngii mushrooms are potential modulators of AA release into the bloodstream.

Citation

Amerikanou C, Kleftaki SA, Gioxari A, Tagkouli D, Kasoura A, Simati S, et al. (2025). The Performance of Pleurotus eryngii β-Glucans on Protein Digestion and the Release of Free Amino Acids in the Bloodstream of Obese Adults. Foods (Basel, Switzerland) https://doi.org/10.3390/foods14152649 PMID: 40807584

Open citation