Cancer Communications
indexed by SCI
BMC

doi: 10.1186/s40880-015-0048-0
The reversal of antineoplastic drug resistance in cancer cells by β-elemene
Guan-Nan Zhang, Charles R. Ashby, Yun-Kai Zhang, Zhe-Sheng Chen* and Huiqin Guo
Department of Pharmaceutical Sciences, College of Pharmacy and Health Sciences, St. John’s University, Queens 11439, NY, USA
[Abstract] Multidrug resistance (MDR), defined as the resistance of cancer cells to compounds with diverse structures and mechanisms of actions, significantly limits the efficacy of antitumor drugs. A major mechanism that mediates MDR in cancer is the overexpression of adenosine triphosphate (ATP)-binding cassette transporters. These transporters bind to their respective substrates and catalyze their efflux from cancer cells, thereby lowering the intracellular concentrations of the substrates and thus attenuating or even abolishing their efficacy. In addition, cancer cells can become resistant to drugs via mechanisms that attenuate apoptosis and cell cycle arrest such as alterations in the p53, check point kinase, nuclear factor kappa B, and the p38 mitogen-activated protein kinase pathway. In this review, we discuss the mechanisms by which β-elemene, a compound extracted from Rhizoma zedoariae that has clinical antitumor efficacy, overcomes drug resistance in cancer.
Chinese Journal of Cancer 2015, Volume: 34, Issue 11
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Guan-Nan Zhang, Charles R. Ashby, Yun-Kai Zhang, Zhe-Sheng Chen* and Huiqin Guo. The reversal of antineoplastic drug resistance in cancer cells by β-elemene. Chin J Cancer. 2015, 34:45. doi:10.1186/s40880-015-0048-0


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