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Agarikon, Quinine Conk · 2024 · Journal Article

High relevance

A fungal polysaccharide from Fomitopsis officinalis as a multi-target molecule to combat cancer.

Fomitopsis officinalis

OncologyImmune supportRespiratory
SpeciesAgarikon, Quinine Conk
JournalInternational journal of biological macromolecules
Year2024

Key points

  • Some macrofungi have a long history of being used as traditional or folk medicines, making significant contributions to human health
  • To discover bioactive molecules with potential anticancer properties, a homogeneous heteropolysaccharide (FOBP90-1) was purified from the medicinal macrofungus Fomitopsis officinalis
  • FOBP90-1 was found to have a molecular weight of 2.87 × 10 4 g/mol and mainly consist of →6)-α-d-Galp-(1→, →2,6)-α-d-Galp-(1→, →3)-α-l-Fucp-(1→, →6)-β-d-Glcp-(1→, α-d-Manp-(1→, and 3-O-Me-α-l-Fucp-(1→ according to UV, FT-IR, methylation analysis, and NMR data
  • The following mechanistic analysis discovered that the in vivo antitumor effect was linked to immune activation and angiogenesis inhibition
  • These effects were mediated by the interactions of FOBP90-1 with TLR-2, TLR-4, PD-L1, and VEGFR-2, as determined through a series of experiments involving cells, transgenic zebrafish, molecular docking simulations, and surface plasmon resonance (SPR)
  • All the experimental findings have demonstrated that FOBP90-1, a purified fungal polysaccharide, is expected to be utilized as a cancer treatment agent

Metadata-grounded summary

Citation abstract

Some macrofungi have a long history of being used as traditional or folk medicines, making significant contributions to human health. To discover bioactive molecules with potential anticancer properties, a homogeneous heteropolysaccharide (FOBP90-1) was purified from the medicinal macrofungus Fomitopsis officinalis. FOBP90-1 was found to have a molecular weight of 2.87 × 10 4 g/mol and mainly consist of →6)-α-d-Galp-(1→, →2,6)-α-d-Galp-(1→, →3)-α-l-Fucp-(1→, →6)-β-d-Glcp-(1→, α-d-Manp-(1→, and 3-O-Me-α-l-Fucp-(1→ according to UV, FT-IR, methylation analysis, and NMR data. In addition to its structural properties, FOBP90-1 displayed anticancer activity in zebrafish models. The following mechanistic analysis discovered that the in vivo antitumor effect was linked to immune activation and angiogenesis inhibition. These effects were mediated by the interactions of FOBP90-1 with TLR-2, TLR-4, PD-L1, and VEGFR-2, as determined through a series of experiments involving cells, transgenic zebrafish, molecular docking simulations, and surface plasmon resonance (SPR). All the experimental findings have demonstrated that FOBP90-1, a purified fungal polysaccharide, is expected to be utilized as a cancer treatment agent.

Citation

Liu W, Shen Y, Hou J, Jiang H, Wang Q, Zhang L, et al. (2024). A fungal polysaccharide from Fomitopsis officinalis as a multi-target molecule to combat cancer. International journal of biological macromolecules https://doi.org/10.1016/j.ijbiomac.2024.132543 PMID: 38788870

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