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Irofulven Induces Apoptosis in Breast Cancer Cells Regardless of Caspase-3 Status*
Authors:Maryanne C.S. Herzig  Huiyun Liang  Anne E. Johnson  Barbara Woynarowska  Jan M. Woynarowski
Affiliation:(1) Cancer Therapy and Research Center, USA;(2) Health Science Center, The University of Texas, San Antonio, TX, USA
Abstract:Caspase-3 deficiency can limit the efficiency of pro-apoptotic anticancer treatments. Irofulven (hydroxymethylacylfulvene, HMAF, MGI 114, NSC 683863) is an antitumor drug, currently in a Phase III and multiple Phase II trials, which can differentiate between tumor and normal cells in apoptosis induction. This study investigated whether apoptosis induced by irofulven requires caspase-3. Irofulven action was compared in breast cancer cells differing in caspase-3 status: deficient MCF-7 cells and proficient MDA-MB-231 cells and in normal human mammary epithelial cells, HMEC. Irofulven induces significant, concentration and time-dependent apoptotic DNA fragmentation in breast cancer cell lines, regardless of caspase-3 status. After 12, 24 and 48thinsph incubation at 1thinspmgrM irofulven (sim 3thinsp×thinspGI50), fragmented DNA comprised 3.7, 14.1 and 34.6% and 8.4, 12.6 and 20.3% of total DNA in MCF-7 and MDA-MB-231 cells, respectively. Cell viability (trypan blue exclusion) remained largely unaffected during the first 24thinsph but decreased markedly after 48thinsph, indicating secondary necrosis. Net losses in cell numbers were apparent at 48thinsph. Normal HMEC cells were refractory to 1thinspmgrM drug with only sim3–9% fragmented DNA after 12–48thinsph, although apoptosis was observed at drug levels >3thinspmgrM. The broad-spectrum caspase inhibitor Z-VAD-fmk inhibited irofulven-induced apoptosis of all cell lines at 20thinspmgrM with nearly complete abrogation of apoptosis at 100thinspmgrM. Irofulven treatment resulted in marginal caspase-3 processing in MDA-MB-231 and HMEC cells. These results indicate that whereas the caspase cascade mediates irofulven- induced apoptosis, caspase-3 is dispensable (supported by NIH CA70091 and CA78706).
Keywords:Irofulven  apoptosis  caspase-3  apoptosis resistance  MCF-7 cells
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