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Updated: Dec 12, 2025

Drug Repurposing Hypothesis Generation Using the "RE:fine Drugs" System
Published on: December 11, 2016
Drug repurposing and relabeling for cancer therapy: Emerging benzimidazole antihelminthics with potent anticancer
Joyobrato Nath1, Rajib Paul2, Sankar Kumar Ghosh3
1Department of Zoology, Cachar College, Silchar 788001, Assam, India.
Abstract:
Origin of drug and radio-refractory clones, cancer stem-like cells, and rapid angiogenesis and metastasis are among the primary concerns that limit the efficacy of anticancer treatments, emphasizing the urgency of developing new therapeutics. Factors like high attrition rates, huge investments, patients' heterogeneity, and diverse molecular subtypes have challenged the rapid development of anticancer drugs. Treatment with repurposing pleiotropic benzimidazole antihelminthics, like mebendazole, albendazole, and flubendazole has recently opened a new window, owing to their easy access, low cost as a generic drug, and long track record of safe use in the human population. This review highlights the outcomes of preclinical and clinical studies of these drugs as a potent anticancer agent(s) conducted in the last two decades. Substantial preclinical studies, as well as limited clinical trials, suggest noteworthy anticancer potency of these pleiotropic benzimidazoles, particularly as potent microtubule disrupting, anti-angiogenic, and anti-metastatic agents, inhibitors of the immune checkpoint, hypoxia-inducible factor, epithelial-mesenchymal transition, cancer stemness, and multidrug resistance protein 1, and inducers of apoptosis and M1 polarization. These anticancer effects are attributed to multiple action points, including intrinsic apoptosis, canonical Wnt/β-catenin, JAK/STAT-3, JNK, MEK/ERK, and hedgehog signaling pathways. The effective anticancer properties of mebendazole, albendazole, and flubendazole either alone or synergistically with frontline drugs, warrant their validation through controlled clinical trials to use them as promising avenues to anticancer therapy.
Insights
Repurposed benzimidazole antihelminthics like mebendazole show significant anticancer potential by disrupting microtubules, inhibiting angiogenesis, and overcoming drug resistance. Further clinical trials are warranted to explore their therapeutic efficacy in cancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Drug Repurposing
Background:
- Cancer treatment faces challenges from drug-refractory clones, cancer stem cells, and metastasis, necessitating novel therapeutic strategies.
- High attrition rates and patient heterogeneity complicate the development of new anticancer drugs.
- Benzimidazole antihelminthics (mebendazole, albendazole, flubendazole) offer a low-cost, accessible option with a safe usage history.
Purpose of the Study:
- To review preclinical and clinical evidence of benzimidazole antihelminthics as anticancer agents over the past two decades.
- To highlight their mechanisms of action and potential therapeutic applications in oncology.
Main Methods:
- Comprehensive literature review of preclinical studies and clinical trials.
- Analysis of reported anticancer effects and molecular targets of mebendazole, albendazole, and flubendazole.
Main Results:
- Benzimidazoles exhibit potent anticancer activity through microtubule disruption, anti-angiogenesis, and anti-metastasis.
- They inhibit key pathways including immune checkpoints, hypoxia-inducible factor, epithelial-mesenchymal transition, and cancer stemness.
- These agents induce apoptosis and M1 polarization, impacting multiple cancer hallmarks.
Conclusions:
- Mebendazole, albendazole, and flubendazole demonstrate significant anticancer potential, acting on diverse molecular targets and pathways.
- Their synergistic effects with existing therapies warrant further investigation.
- Controlled clinical trials are essential to validate these drugs as promising anticancer therapeutics.
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