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Immunomodulatory Effect of Polysaccharides from the Mushroom-Forming Basidiomycete Gymnopilus imperialis (Agaricomycetes, Basidiomycota).

Lhaís A CaldasPatricia D SantosElaine R CarboneroMarisa IontaMarta MiyazawaEster S CaixetaAntonio M FregnanBianca Barros NóbregaMaria Carolina Bezerra Di Medeiros LealNelson MenolliDouglas M M SoaresCassius V StevaniPatricia Sartorelli
Published in: Pharmaceuticals (Basel, Switzerland) (2022)
Gymnopilus consists of a widely distributed genus of basidiomycetes, especially in tropical regions of the world, such as Japan, Australia, Paraguay, and Brazil. This genus biosynthesizes interesting bioactive compounds, such as sesquiterpenoids, oligoisoprenoids, styrylpyrones, and lectins. In the present study, the aqueous extract of the basidiomata of Gymnopilus imperialis (Basidiomycota, Agaricomycetes, Agaricales, Hymenogastraceae) was obtained by using the accelerated solvent extraction (ASE) technique, followed by the precipitation of polysaccharide fraction with ethanol. Further purification by freeze-thawing processes, Fehling solution precipitation, and membrane dialysis with different pore sizes yield three main polysaccharide fractions ( Gi -MRSW, Gi -PFME, and Gi -SFME). According to monosaccharide composition and 13 C-NMR data, the Gi -MRSW and Gi -SFME fractions showed to be composed mainly of β-glucans and Gi -PFME by a heterogalactan. Moreover, the immunomodulatory potential of Gi -MRSW was evaluated using RAW 264.7 murine macrophage as a study model. The nitric oxide production was significantly increased in treated samples, and the expression of inducible nitric oxide synthase (iNOS) showed that the fraction Gi -MRSW from G . imperialis induces the M1 polarization phenotype.
Keyphrases
  • nitric oxide synthase
  • nitric oxide
  • poor prognosis
  • magnetic resonance
  • machine learning
  • risk assessment
  • mass spectrometry
  • ionic liquid
  • long non coding rna
  • solid state
  • deep learning
  • binding protein
  • anti inflammatory