4.7 Article

Hydroxygenkwanin Improves the Efficacy of Cytotoxic Drugs in ABCG2-Overexpressing Multidrug-Resistant Cancer Cells

期刊

出版社

MDPI
DOI: 10.3390/ijms232112763

关键词

ABC-transporter; multidrug resistance; chemosensitizer; natural products; ABCG2; hydroxygenkwanin

资金

  1. Ministry of Science and Technology, Taiwan [MOST-108-2320-B-182-038-MY3, MOST-111-2320-B-182-018, MOST-109-2113-M029-007, 109-2314-B-182A-097-MY3]
  2. Chang Gung Memorial Hospital [CMRPD1J0283, BMRPC17, CMRPG1J0073, CORPG1L0051, CORPG2L0031]
  3. Taichung Veterans General Hospital [TCVGH-T1107807]
  4. Intramural Research Program of the National Institutes of Health, National Cancer Institute, Center for Cancer Research

向作者/读者索取更多资源

This study demonstrates that hydroxygenkwanin can reverse multidrug resistance in cancer cells by inhibiting the drug transport function of ABCG2.
Hydroxygenkwanin, a flavonoid isolated from the leaves of the Daphne genkwa plant, is known to have pharmacological properties; however, its modulatory effect on multidrug resistance, which is (MDR) mediated by ATP-binding cassette (ABC) drug transporters, has not been investigated. In this study, we examine the interaction between hydroxygenkwanin, ABCB1, and ABCG2, which are two of the most well-characterized ABC transporters known to contribute to clinical MDR in cancer patients. Hydroxygenkwanin is not an efflux substrate of either ABCB1 or ABCG2. We discovered that, in a concentration-dependent manner, hydroxygenkwanin significantly reverses ABCG2-mediated resistance to multiple cytotoxic anticancer drugs in ABCG2-overexpressing multidrug-resistant cancer cells. Although it inhibited the drug transport function of ABCG2, it had no significant effect on the protein expression of this transporter in cancer cells. Experimental data showing that hydroxygenkwanin stimulates the ATPase activity of ABCG2, and in silico docking analysis of hydroxygenkwanin binding to the inward-open conformation of human ABCG2, further indicate that hydroxygenkwanin sensitizes ABCG2-overexpressing cancer cells by binding to the substrate-binding pocket of ABCG2 and attenuating the transport function of ABCG2. This study demonstrates the potential use of hydroxygenkwanin as an effective inhibitor of ABCG2 in drug combination therapy trials for patients with tumors expressing higher levels of ABCG2.

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