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A novel arsenical has antitumor activity toward As2O3-resistant and MRP1/ABCC1-overexpressing cell lines
1Department of Oncology, Segal Cancer Comprehensive Center, Lady Davis Institute for Medical Research, Sir Mortimer B. Davis Jewish General Hospital, McGill University, Montréal, Quebec, Canada.
Abstract:
Inorganic arsenic trioxide (As(2)O(3)) is a highly effective treatment for acute promyelocytic leukemia (APL). However, other cancers do not respond well to this form of arsenic at clinically achievable doses. We tested a novel arsenical, S-dimethylarsino-glutathione (darinaparsin) for efficacy in various malignancies in vitro. Darinaparsin is significantly more potent than As(2)O(3) at mediating apoptosis in various malignant cell lines and is highly active against APL cells derived for As(2)O(3) resistance. We provide evidence that darinaparsin triggers apoptosis by inducing signaling pathways that do not completely overlap with As(2)O(3). We show that darinaparsin induces apoptosis and oxidative stress to a greater extent than As(2)O(3), although like As(2)O(3), darinaparsin-induced toxicity is c-Jun NH(2)-terminal kinase-dependent. However, darinaparsin does not induce promyelocytic leukemia/retinoic acid receptor alpha (PML/RAR alpha) degradation or rearrange PML nuclear bodies in APL cells, nor is its toxicity increased by glutathione depletion. Darinaparsin treatment results in higher intracellular arsenic accumulation when compared to As(2)O(3) treatment. This may be explained by our finding that As(2)O(3), but not darinaparsin, is efficiently exported by ABCC1, suggesting increased therapeutic efficacy of darinaparsin in ABCC1-overexpressing tumors. Our studies indicate that darinaparsin efficiently kills tumor cells with increased antioxidant capacity and drug exporters and suggest that darinaparsin may have a broader therapeutic spectrum than As(2)O(3).
Insights
A new arsenic compound, darinaparsin, shows greater potency than arsenic trioxide in killing various cancer cells, including drug-resistant types. This novel arsenical offers potential for broader cancer treatment applications.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Inorganic arsenic trioxide (As(2)O(3)) is effective for acute promyelocytic leukemia (APL) but limited for other cancers.
- Novel arsenicals are needed to overcome limitations of As(2)O(3) in broader cancer therapy.
Purpose of the Study:
- To evaluate the efficacy of a novel arsenical, S-dimethylarsino-glutathione (darinaparsin), against various cancer cell lines in vitro.
- To compare the mechanisms of action and cellular accumulation of darinaparsin with As(2)O(3).
Main Methods:
- In vitro testing of darinaparsin and As(2)O(3) on diverse malignant cell lines.
- Analysis of apoptosis induction, signaling pathways, oxidative stress, and intracellular arsenic accumulation.
- Investigation of drug efflux transporter ABCC1 involvement and glutathione depletion effects.
Main Results:
- Darinaparsin demonstrated significantly higher potency in inducing apoptosis across multiple cancer cell lines compared to As(2)O(3).
- Darinaparsin showed activity against As(2)O(3)-resistant APL cells and induced greater oxidative stress.
- Higher intracellular arsenic accumulation was observed with darinaparsin, partly due to less efficient export by ABCC1 compared to As(2)O(3).
Conclusions:
- Darinaparsin exhibits a broader therapeutic potential than As(2)O(3), effectively targeting cancer cells with high antioxidant capacity and drug efflux mechanisms.
- The distinct apoptotic signaling and cellular accumulation profile suggests darinaparsin may overcome resistance mechanisms associated with As(2)O(3).
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