4.5 Article

ErbB1/2 tyrosine kinase inhibitor mediates oxidative stress-induced apoptosis in inflammatory breast cancer cells

期刊

BREAST CANCER RESEARCH AND TREATMENT
卷 132, 期 1, 页码 109-119

出版社

SPRINGER
DOI: 10.1007/s10549-011-1568-1

关键词

Reactive oxygen species; SUM149; SUM190; IBC; XIAP; Lapatinib; Superoxide; SOD; Antioxidants; Therapeutic resistance; Redox modulators; Caspases

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资金

  1. American Cancer Society [RSG-08-290-01-CCE]
  2. Department of Defense [W81XWH-08-1-0363]
  3. Viral Oncology Training [5T32-CA009111-32]
  4. SPORE at Duke Comprehensive Cancer Center [5P50-CA068438]

向作者/读者索取更多资源

Overexpression of epidermal growth factor receptors (ErbB) is frequently seen in inflammatory breast cancer (IBC). Treatment with ErbB1/2-targeting agents (lapatinib) mediates tumor apoptosis by downregulating ErbB1/2 phosphorylation and downstream survival signaling. In this study, using carboxy-H(2)DCFDA, DHE, and MitoSOX Red to examine changes in hydrogen peroxide radicals, cytoplasmic and mitochondrial superoxide, respectively, we observed that GW583340 (a lapatinib-analog) increases reactive oxygen species (ROS) in two models of IBC (SUM149, SUM190) that are sensitive to ErbB1/2 blockade. This significant increase in ROS levels was similar to those generated by classical oxidative agents H2O2 and paraquat. In contrast, minimal to basal levels of ROS were measured in a clonal population of GW583340-resistant IBC cells (rSUM149 and rSUM190). The GW583340-resistant IBC cells displayed increased SOD1, SOD2, and glutathione expression, which correlated with decreased sensitivity to the apoptotic-inducing effects of GW583340, H2O2, and paraquat. The ROS increase and cell death in the GW583340-sensitive cells was reversed by simultaneous treatment with a superoxide dismutase (SOD) mimic. Additionally, overcoming the high levels of antioxidants using redox modulators induced apoptosis in the GW583340-resistant cells. Taken together, these data demonstrate a novel mechanism of lapatinib-analog-induced apoptosis and indicate that resistant cells have increased antioxidant potential, which can be overcome by treatment with SOD modulators.

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