Bruceantin inhibits multiple myeloma cancer stem cell proliferation |
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Authors: | Mark E. Issa Sarah Berndt Gilles Carpentier John M. Pezzuto |
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Affiliation: | 1. School of Pharmaceutical Sciences, University of Geneva, University of Lausanne, Rue Michel Servet, Geneva, Switzerland;2. Laboratoire CRRET, Faculté des Sciences et Technologie, Université Paris Est Créteil, Créteil Cedex, France;3. Arnold &4. Marie Schwartz College of Pharmacy and Health Sciences, Long Island University, Brooklyn, NY, USA |
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Abstract: | Multiple myeloma (MM) continues to claim the lives of a majority of patients. MM cancer stem cells (CSCs) have been demonstrated to sustain tumor growth. Due to their ability to self-renew and to express detoxifying enzymes and efflux transporters, MM-CSCs are rendered highly resistant to conventional therapies. Therefore, managing MM-CSCs characteristics could have profound clinical implications. Bruceantin (BCT) is a natural product previously demonstrated to inhibit the growth of MM in RPMI 8226 cells-inoculated mouse xenograft models, and to cause regression in already established tumors. The objectives of the present study were to test the inhibitory effects of BCT on MM-CSCs growth derived from a human primary tumor, and to explore a mechanism of action underlying these effects. BCT exhibited potent antiproliferative activity in MM-CSCs starting at 25 nM. BCT induced cell cycle arrest, cell death and apoptosis in MM-CSCs as well as inhibited cell migration and angiogenesis in vitro. Using a qPCR screen, it was found that the gene expression of a number of Notch pathway members was altered. Pretreatment of MM-CSCs with the γ-secretase inhibitor RO4929097, a Notch pathway inhibitor, reversed BCT-induced effects on MM-CSCs proliferation. In this study, BCT was shown to be an effective agent in controlling the proliferation, viability and migration of MM-CSCs as well as angiogenesis in vitro. The effect on MM-CSCs proliferation may be mediated by the Notch pathway. These results warrant further investigation of BCT in a broader set of human-derived MM-CSCs and with in vivo models representative of MM. |
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Keywords: | Bruceantin cell death multiple myeloma cancer stem cells notch proliferation |
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