A novel arsenical has antitumor activity toward As2O3-resistant and MRP1/ABCC1-overexpressing cell lines

Z Diaz1, K K Mann, S Marcoux

  • 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.

Leukemia
|July 18, 2008
PubMed

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).