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Cordyceps, Caterpillar Fungus · 2023 · Journal Article

Medium relevance

Network pharmacology and molecular docking analysis on the mechanism of Cordyceps militaris polysaccharide regulating immunity through TLR4/TNF-α pathwayss.

Ophiocordyceps sinensis

Immune supportEnergy & fatigueRespiratory
SpeciesCordyceps, Caterpillar Fungus
JournalJournal of biochemical and molecular toxicology
Year2023

Key points

  • The role of polysaccharide components in the immune system, especially immunomodulatory effects, has received increasing attention
  • In this context, in this study, network pharmacology was adopted to explore the hypothesis of a multitarget mechanism for immune modulation by Chrysalis polysaccharides
  • A total of 174 common targets were screened by network pharmacology, with the main ones being TNF, MAPK3, CASP3, VEGFA, and STAT3, mostly enriched in the Toll pathway
  • The molecular docking results showed that the polysaccharide fraction of Chrysalis binds well to TNF proteins
  • Besides, in vitro cellular assays were performed to verify the ability of Chrysalis polysaccharides to regulate macrophage polarization and to screen for macrophage surface receptors
  • Furthermore, in vivo experiments were conducted to prove the activation of TLR4 and TNF-α protein expression in mice by Chrysalis polysaccharide

Metadata-grounded summary

Citation abstract

The role of polysaccharide components in the immune system, especially immunomodulatory effects, has received increasing attention. In this context, in this study, network pharmacology was adopted to explore the hypothesis of a multitarget mechanism for immune modulation by Chrysalis polysaccharides. A total of 174 common targets were screened by network pharmacology, with the main ones being TNF, MAPK3, CASP3, VEGFA, and STAT3, mostly enriched in the Toll pathway. The molecular docking results showed that the polysaccharide fraction of Chrysalis binds well to TNF proteins. Besides, in vitro cellular assays were performed to verify the ability of Chrysalis polysaccharides to regulate macrophage polarization and to screen for macrophage surface receptors. Furthermore, in vivo experiments were conducted to prove the activation of TLR4 and TNF-α protein expression in mice by Chrysalis polysaccharide.

Citation

Pei H, He Z, Chen W, Zhao Y, Li J, Wang R, et al. (2023). Network pharmacology and molecular docking analysis on the mechanism of Cordyceps militaris polysaccharide regulating immunity through TLR4/TNF-α pathwayss. Journal of biochemical and molecular toxicology https://doi.org/10.1002/jbt.23345 PMID: 37050869

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