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Published on: June 26, 2018
Repurposing Drugs in Oncology (ReDO)-itraconazole as an anti-cancer agent
Pan Pantziarka1, Vidula Sukhatme2, Gauthier Bouche3
1Anticancer Fund, 1853 Strombeek-Bever, Belgium ; The George Pantziarka TP53 Trust, London, KT1 2JP, UK.
Abstract:
Itraconazole, a common triazole anti-fungal drug in widespread clinical use, has evidence of clinical activity that is of interest in oncology. There is evidence that at the clinically relevant doses, itraconazole has potent anti-angiogenic activity, and that it can inhibit the Hedgehog signalling pathway and may also induce autophagic growth arrest. The evidence for these anticancer effects, in vitro, in vivo, and clinical are summarised, and the putative mechanisms of their action outlined. Clinical trials have shown that patients with prostate, lung, and basal cell carcinoma have benefited from treatment with itraconazole, and there are additional reports of activity in leukaemia, ovarian, breast, and pancreatic cancers. Given the evidence presented, a case is made that itraconazole warrants further clinical investigation as an anti- cancer agent. Additionally, based on the properties summarised previously, it is proposed that itraconazole may synergise with a range of other drugs to enhance the anti-cancer effect, and some of these possible combinations are presented in the supplementary materials accompanying this paper.
Insights
Itraconazole, an antifungal drug, shows significant anticancer effects by inhibiting angiogenesis and key signaling pathways. Further clinical trials are recommended for its use as a cancer treatment.
Area of Science:
- Oncology
- Pharmacology
Background:
- Itraconazole is a widely used triazole antifungal agent.
- Emerging evidence suggests clinical activity in oncology.
Purpose of the Study:
- To summarize evidence of itraconazole's anticancer effects.
- To outline potential mechanisms of action.
- To propose itraconazole as a candidate for further cancer research.
Main Methods:
- Review of in vitro, in vivo, and clinical evidence.
- Summary of proposed anticancer mechanisms.
- Analysis of clinical trial outcomes.
Main Results:
- Itraconazole exhibits potent anti-angiogenic activity.
- It inhibits the Hedgehog signaling pathway.
- Autophagic growth arrest may be induced.
- Clinical trials show benefits in prostate, lung, and basal cell carcinoma.
- Activity reported in leukemia, ovarian, breast, and pancreatic cancers.
Conclusions:
- Itraconazole demonstrates significant anticancer potential.
- Further clinical investigation as an anticancer agent is warranted.
- Potential for synergistic effects with other anticancer drugs exists.
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