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September 18, 2025Frontiers in Pharmacology6 citationsOpen Access

Cantharidin: a double-edged sword in medicine and toxicology

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JZJie ZhangTTTongtong TianCLCanyu Li

Key Points

  • Cantharidin exhibits potent anti-tumor activity while also causing significant toxicity, affecting the heart and liver.
  • CTD's pharmacological impact includes growth inhibition of cancer cell lines and antibacterial properties, alongside severe toxic effects.
  • Mitigation strategies for cantharidin toxicity focus on structural modifications and drug combinations to enhance anti-tumor efficacy.
  • Research highlights CTD's potential in treating drug-resistant tumors, emphasizing its dual-edged nature in medical applications.

Abstract

Cantharidin (CTD), a natural terpenoid toxin secreted by blister beetles, acts as a potent inhibitor of protein phosphatase. As the principal active component of Mylabris, a traditional Chinese medicine, CTD has attracted considerable interest due to its dual properties, combining potent anti-tumor activity with significant toxicity. Contemporary pharmacological research demonstrates that CTD inhibits the growth and proliferation of diverse cancer cells lines. It exhibits antibacterial and antiparasitic properties, and demonstrates pesticidal activity in agricultural applications. Despite these benefits, CTD exhibits a prominent double-edged profile, marked by severe toxic effects, including cardiotoxicity, nephrotoxicity, gastrointestinal toxicity, and reproductive toxicity. Our prior research has identified the heart and liver as primary targets of CTD’s acute toxicity, where it induces apoptosis and necrosis of cardiomyocytes and hepatocytes. Recent efforts to mitigate its toxicity while preserving efficacy have focused on the structural modifications of CTD and the development of its derivatives. Additionally, CTD has been demonstrated to enhance anti-tumor efficacy when combined with other drugs, particularly against certain drug-resistant tumors. This review comprehensively evaluates CTD’s pharmacology and toxicology, synthesizes pertinent toxicological data, and explores strategies for toxicity reduction to guide future research.

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Cite This Study

Zhang et al. (2025) studied this question.

synapsesocial.com/papers/68d461c231b076d99fa60eefhttps://doi.org/10.3389/fphar.2025.1644186
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