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Snow Fungus, Silver Ear · 2024 · Research Article

High relevance

Functionalities of Tremella fuciformis Polysaccharides Modified with Gallic Acid.

Tremella fuciformis

Immune supportGut & microbiomeSkin & hydration
SpeciesSnow Fungus, Silver Ear
JournalMolecules (Basel, Switzerland)
Year2024

Key points

  • This research aimed to modify polysaccharides extracted from the edible mushroom Tremella fuciformis with gallic acid (GA) and to complex them with zinc ions
  • The functionalities of the modified Tremella fuciformis polysaccharides (TFPs) were investigated
  • Regarding antioxidant activity, TFP-GA demonstrated effective scavenging activity against DPPH radicals, nitric oxide, and hydrogen peroxide
  • Additionally, TFP-GA exhibited superior reducing ability toward Fe 3+ and enhanced chelating activity toward Fe 2+ compared to unmodified TFP. Notably, the TFP-GA conjugate outperformed GA in Fe 2+ -chelating activity
  • In terms of antimicrobial activity, the TFP-GA-Zn complex showed significantly improved antimicrobial effectiveness against S. aureus and E. coli compared to TFP-GA

Metadata-grounded summary

Citation abstract

This research aimed to modify polysaccharides extracted from the edible mushroom Tremella fuciformis with gallic acid (GA) and to complex them with zinc ions. The functionalities of the modified Tremella fuciformis polysaccharides (TFPs) were investigated. Regarding antioxidant activity, TFP-GA demonstrated effective scavenging activity against DPPH radicals, nitric oxide, and hydrogen peroxide. Additionally, TFP-GA exhibited superior reducing ability toward Fe 3+ and enhanced chelating activity toward Fe 2+ compared to unmodified TFP. Notably, the TFP-GA conjugate outperformed GA in Fe 2+ -chelating activity. In terms of antimicrobial activity, the TFP-GA-Zn complex showed significantly improved antimicrobial effectiveness against S. aureus and E. coli compared to TFP-GA.

Citation

Liu TT, Hong KS, Yang TS (2024). Functionalities of Tremella fuciformis Polysaccharides Modified with Gallic Acid. Molecules (Basel, Switzerland) https://doi.org/10.3390/molecules29245890 PMID: 39769979

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