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King Oyster, Eryngii · 2017 · Journal Article

Medium relevance

Wild mushrooms and their mycelia as sources of bioactive compounds: Antioxidant, anti-inflammatory and cytotoxic properties.

Pleurotus eryngii

Gut & microbiome
SpeciesKing Oyster, Eryngii
JournalFood chemistry
Year2017

Key points

  • Mushrooms are important sources of natural bioactive compounds
  • Pleurotus eryngii (DC.) Quél is recognized for its organoleptic quality and health effects, being extensively commercialized
  • Accordingly, P. eryngii and S. bellinii were studied for their phenolic acids and sterols, antioxidant capacity, anti-inflammatory effect and anti-proliferative activity
  • S. bellinii mycelia showed higher contents of ergosterol and phenolic compounds (also higher in its fruiting body) and stronger antioxidant activity than P. eryngii
  • Conversely, P. eryngii mycelia showed anti-inflammatory (absent in S. bellinii mycelia) and a cytotoxicity similar (sometimes superior) to its fruiting bodies, contrarily to S. bellinii
  • Furthermore, the assayed species showed differences in the growth rate and produced mycelia, which should be considered in further applications

Metadata-grounded summary

Citation abstract

Mushrooms are important sources of natural bioactive compounds. Pleurotus eryngii (DC.) Quél is recognized for its organoleptic quality and health effects, being extensively commercialized. Instead, Suillus bellinii (Inzenga) Watling is an ectomycorrhizal symbiont, whose main properties were scarcely reported. Considering current trends, the mycelia and the culture media of these mushrooms might be potential sources of bioactive compounds. Accordingly, P. eryngii and S. bellinii were studied for their phenolic acids and sterols, antioxidant capacity, anti-inflammatory effect and anti-proliferative activity. S. bellinii mycelia showed higher contents of ergosterol and phenolic compounds (also higher in its fruiting body) and stronger antioxidant activity than P. eryngii. Conversely, P. eryngii mycelia showed anti-inflammatory (absent in S. bellinii mycelia) and a cytotoxicity similar (sometimes superior) to its fruiting bodies, contrarily to S. bellinii. Furthermore, the assayed species showed differences in the growth rate and produced mycelia, which should be considered in further applications.

Citation

Souilem F, Fernandes Â, Calhelha RC, Barreira JCM, Barros L, Skhiri F, et al. (2017). Wild mushrooms and their mycelia as sources of bioactive compounds: Antioxidant, anti-inflammatory and cytotoxic properties. Food chemistry https://doi.org/10.1016/j.foodchem.2017.03.026 PMID: 28407928

Open citation