4.6 Article

CAPE Analogs Induce Growth Arrest and Apoptosis in Breast Cancer Cells

期刊

MOLECULES
卷 20, 期 7, 页码 12576-12589

出版社

MDPI
DOI: 10.3390/molecules200712576

关键词

breast cancer; CAPE; apoptosis; NF kappa B; p53; caspase

资金

  1. New Brunswick Innovation Foundation
  2. New Brunswick Health Research Foundation
  3. Natural Sciences and Engineering Research Council of Canada
  4. Canadian Breast Cancer Foundation-Atlantic Chapter
  5. Canadian Breast Cancer Society/QEII Foundation
  6. Universite de Moncton
  7. Canadian Institutes of Health Research (CIHR) New Investigator Award
  8. TD Bank Graduate Student Research Award at the Atlantic Cancer Research Institute
  9. Beatrice Hunter Cancer Research Institute
  10. Cancer Research Training Program as part of The Terry Fox Foundation Strategic Health Research Training Program in Cancer Research at CIHR

向作者/读者索取更多资源

Breast cancer is the second leading cause of death amongst women worldwide. As a result, many have turned their attention to new alternative approaches to treat this disease. Caffeic acid phenylethyl ester (CAPE), a well-known active compound from bee propolis, has been previously identified as a strong antioxidant, anti-inflammatory, antiviral and anticancer molecule. In fact, CAPE is well documented as inducing cell death by inhibiting NF kappa B and by inducing pro-apoptotic pathways (i.e., p53). With the objective of developing stronger anticancer compounds, we studied 18 recently described CAPE derivatives for their ability to induce apoptosis in breast cancer cell lines. Five of the said compounds, including CAPE, were selected and subsequently characterised for their anticancer mechanism of action. We validated that CAPE is a potent inducer of caspase-dependent apoptosis. Interestingly, some newly synthesized CAPE derivatives also showed greater cell death activity than the lead CAPE structure. Similarly to CAPE, analog compounds elicited p53 activation. Interestingly, one compound in particular, analog 10, induced apoptosis in a p53-mutated cell line. These results suggest that our new CAPE analog compounds may display the capacity to induce breast cancer apoptosis in a p53-dependent and/or independent manner. These

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