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February 8, 2026Molecules0 citationsOpen Access

Secondary Metabolites with Antithrombotic and Antioxidant Activities Derived from Cordyceps cicadae

XHXingze HuGWGuisheng WangTCTao Chen

Key Points

  • The aim is to validate the traditional uses of Cordyceps cicadae by identifying bioactive compounds and assessing their activities.
  • Chromatographic separations to isolate compounds.
  • Spectroscopic analysis for chemical structure elucidation.
  • Assessment of antithrombotic effects using a zebrafish model.
  • DPPH radical scavenging assay to evaluate antioxidant activity.
  • Significant antithrombotic effects observed at 20 μM concentration.
  • Isolated compounds showed potent antioxidant activity with IC50 values between 12.81 and 20.16 μM.

Abstract

Cordyceps cicadae, a medicinal and edible entomopathogenic fungus, has been widely used in traditional Chinese medicine for treating various ailments. This study aimed to validate its ethnopharmacological uses by investigating bioactive constituents and their antithrombotic and antioxidant activities. Through various chromatographic separations, one unreported flavonoid; quercetin-3-O-β-D-methylglucopyranoside (1); three known flavonoids (2–4); and one new dicarboxylic acid derivative, cicadae acid (5), were isolated from C. cicadae. Their chemical structures were elucidated by a comprehensive spectroscopic analysis (1D/2D NMR and HRESIMS), electronic circular dichroism (ECD) calculations, a DP4+ probability analysis, and the modified Mosher method. All compounds exhibited significant antithrombotic effects at a concentration of 20 μM in a zebrafish model. Compounds 1–4 exhibited potent antioxidant activity in the DPPH radical scavenging assay, with IC50 values ranging from 12.81 ± 3.42 to 20.16 ± 2.64 μM. These findings provide scientific evidence supporting the traditional application of C. cicadae, identifying specific flavonoids and dicarboxylic acids as potential therapeutic agents for thrombosis and oxidative stress-related disorders.

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Cite This Study

Hu et al. (2026) studied this question.

synapsesocial.com/papers/698827b40fc35cd7a8846971https://doi.org/10.3390/molecules31030558
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