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Cordyceps, Caterpillar Fungus · 2026 · Review

High relevance

Anti-Inflammatory Mechanisms and Translational Relevance of Cordyceps sinensis and Its Bioactive Constituents.

Ophiocordyceps sinensis

Immune supportEnergy & fatigueRespiratory
SpeciesCordyceps, Caterpillar Fungus
JournalJournal of inflammation research
Year2026

Key points

  • Cordyceps sinensis, an important medicinal fungus in traditional Chinese medicine, has gained increasing attention for its diverse pharmacological activities, particularly its anti-inflammatory properties
  • Its principal bioactive components, including cordycepin, cordycepic acid, polysaccharides, and sterols, exert significant protective effects in a wide range of inflammation-related diseases, primarily covering respiratory diseases, autoimmune disorders, neuroinflammatory conditions, and metabolic and gastrointestinal syndromes
  • These compounds act mainly by modulating key signaling pathways, including NF-κB, MAPK, TLR4/MyD88, PI3K/Akt, JAK/STAT, and Nrf2/HO-1
  • This review summarizes recent progress in the identification of anti-inflammatory components of Cordyceps sinensis and their mechanisms of action, highlights current challenges in clinical translation, and outlines future research directions
  • Collectively, these findings emphasize the broad potential of Cordyceps sinensis as a multi-target natural product-based anti-inflammatory therapy

Metadata-grounded summary

Citation abstract

Cordyceps sinensis, an important medicinal fungus in traditional Chinese medicine, has gained increasing attention for its diverse pharmacological activities, particularly its anti-inflammatory properties. Its principal bioactive components, including cordycepin, cordycepic acid, polysaccharides, and sterols, exert significant protective effects in a wide range of inflammation-related diseases, primarily covering respiratory diseases, autoimmune disorders, neuroinflammatory conditions, and metabolic and gastrointestinal syndromes. These compounds act mainly by modulating key signaling pathways, including NF-κB, MAPK, TLR4/MyD88, PI3K/Akt, JAK/STAT, and Nrf2/HO-1. This review summarizes recent progress in the identification of anti-inflammatory components of Cordyceps sinensis and their mechanisms of action, highlights current challenges in clinical translation, and outlines future research directions. Collectively, these findings emphasize the broad potential of Cordyceps sinensis as a multi-target natural product-based anti-inflammatory therapy.

Citation

Xie J, Xu J, Fan Q, Chen Y (2026). Anti-Inflammatory Mechanisms and Translational Relevance of Cordyceps sinensis and Its Bioactive Constituents. Journal of inflammation research https://doi.org/10.2147/JIR.S582921 PMID: 41767899

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