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Abstract 3658: 5F 203 modulates oxidative stress, induces single-strand break formation and promotes mitochondrial membrane potential loss in sensitive breast cancer cells

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Abstract

Targeted pharmacotherapeutic agents have been successful in treating women with breast cancer that either over-expresses human epidermal growth factor receptor 2 (Her2/neu) or is dependent upon estrogen receptor signaling. However, patients with Her2/neu-negative or hormone-independent breast cancer do not benefit from these targeted agents. A candidate anticancer agent 2-(4-amino-3-methylphenyl)-5-benzothiazole (5F 203) targets the aryl hydrocarbon receptor signaling pathway and potently inhibits the growth of breast cancer cells irrespective of either estrogen receptor or Her2/neu status. 5F 203 may represent a promising agent for women who lack targeted therapeutic options. We have previously assessed the role reactive oxygen species (ROS) play in mediating the anticancer activity of 5F 203. In our current studies, we pretreated 5F 203-sensitive breast cancer cells with rotenone prior to treatment with 5F 203. This pretreatment diminished 5F 203-mediated ROS formation as measured by DCF-DA staining followed by flow cytometry. This suggests 5F 203-induced ROS production is partially derived from the mitochondria. Using the comet assay and a JC1 dye-based fluorometry assay respectively, we found 5F 203 induced single-strand break formation and mitochondrial membrane potential loss in sensitive breast cancer cells. Pretreatment with the antioxidant N-acetyl-L-cysteine partially diminished apoptosis as assessed by relief contrast microscopy and the Annexin V/PI assay. This implies that 5F 203-induced apoptosis depends at least in part on ROS derived from mitochondria. We also analyzed 84 oxidative stress-responsive genes using PCR-array and determined that 5F 203 significantly increased the expression of cytoglobin, a novel tumor suppressor, in sensitive breast cancer cells. These data imply ROS and cytoglobin contribute to the anticancer activity of 5F 203.Citation Format: {Authors}. {Abstract title} [abstract]. In: Proceedings of the 101st Annual Meeting of the American Association for Cancer Research; 2010 Apr 17-21; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2010;70(8 Suppl):Abstract nr 3658.
Original languageAmerican English
Pages (from-to)3658-3658
Number of pages1
JournalCancer Research
Volume70
Issue number8_Supplement
DOIs
StatePublished - Apr 15 2010

Disciplines

  • Medicine and Health Sciences
  • Molecular Biology

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