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Three-Dimensional Cell Culture-Based Screening Identifies the Anthelmintic Drug Nitazoxanide as a Candidate for
Wojciech Senkowski1, Xiaonan Zhang2, Maria Hägg Olofsson2
1Department of Medical Sciences, Division of Cancer Pharmacology and Computational Medicine, Uppsala University, Uppsala, Sweden.
Abstract:
Because dormant cancer cells in hypoxic and nutrient-deprived regions of solid tumors provide a major obstacle to treatment, compounds targeting those cells might have clinical benefits. Here, we describe a high-throughput drug screening approach, using glucose-deprived multicellular tumor spheroids (MCTS) with inner hypoxia, to identify compounds that specifically target this cell population. We used a concept of drug repositioning-using known molecules for new indications. This is a promising strategy to identify molecules for rapid clinical advancement. By screening 1,600 compounds with documented clinical history, we aimed to identify candidates with unforeseen potential for repositioning as anticancer drugs. Our screen identified five molecules with pronounced MCTS-selective activity: nitazoxanide, niclosamide, closantel, pyrvinium pamoate, and salinomycin. Herein, we show that all five compounds inhibit mitochondrial respiration. This suggests that cancer cells in low glucose concentrations depend on oxidative phosphorylation rather than solely glycolysis. Importantly, continuous exposure to the compounds was required to achieve effective treatment. Nitazoxanide, an FDA-approved antiprotozoal drug with excellent pharmacokinetic and safety profile, is the only molecule among the screening hits that reaches high plasma concentrations persisting for up to a few hours after single oral dose. Nitazoxanide activated the AMPK pathway and downregulated c-Myc, mTOR, and Wnt signaling at clinically achievable concentrations. Nitazoxanide combined with the cytotoxic drug irinotecan showed anticancer activity in vivo. We here report that the FDA-approved anthelmintic drug nitazoxanide could be a potential candidate for advancement into cancer clinical trials.
Insights
Researchers screened 1,600 drugs to find new cancer treatments. Nitazoxanide, an existing drug, showed promise in targeting dormant cancer cells and may advance to clinical trials.
Area of Science:
- Oncology
- Drug Discovery
- Biochemistry
Background:
- Dormant cancer cells in hypoxic, nutrient-deprived tumor regions are treatment-resistant.
- Targeting these cells offers potential clinical benefits.
Purpose of the Study:
- Identify compounds that specifically target dormant cancer cells.
- Reposition existing drugs for anticancer applications.
Main Methods:
- High-throughput screening of 1,600 clinically used compounds.
- Utilized glucose-deprived multicellular tumor spheroids (MCTS) with inner hypoxia.
- Assessed compound activity and mechanism of action.
Main Results:
- Five compounds (nitazoxanide, niclosamide, closantel, pyrvinium pamoate, salinomycin) showed MCTS-selective activity.
- All identified compounds inhibit mitochondrial respiration.
- Nitazoxanide demonstrated favorable pharmacokinetics, activated AMPK, and downregulated key cancer pathways (c-Myc, mTOR, Wnt).
Conclusions:
- Nitazoxanide is a promising drug candidate for repositioning into cancer clinical trials.
- Continuous drug exposure is crucial for efficacy.
- Targeting oxidative phosphorylation in low-glucose conditions is a viable strategy.

