| Literature DB >> 34126072 |
Jing-Quan Wang1, Bo Wang2, Qiu-Xu Teng1, Zi-Ning Lei1, Yi-Dong Li1, Zhi Shi3, Li-Ying Ma2, Hong-Min Liu4, Zhijun Liu5, Zhe-Sheng Chen6.
Abstract
Multidrug resistance-associated protein 7 (MRP7) is an important member of ABC transporter superfamily and has been revealed to mediate the cross-membrane translocation of a wide range of chemotherapeutic agents including taxanes, epothilones, Vinca alkaloids, Anthracyclines and Epipodophyllotoxins.In our previous study, a 1,2,3-triazole-pyrimidine hybridCMP25was synthesized and found able to efficiently reverse multidrug resistance (MDR) mediated by P-glycoprotein. In this study, we evaluated the efficacy of compound CMP25in reversing MDR mediated by MRP7in vitro. The results showed that CMP25significantly sensitized MRP7-overexpressing cells to anticancer drugs that are MRP7 substrates. Mechanistic study showed that CMP25reversed MRP7-mediated MDR by increasing the intracellular accumulation of anticancer drugs and decreasing drug efflux, without altering protein expression level or subcellular localization. Currently, very few studies on synthetic MRP7 modulators have been published. Our findings provide a valuable prototype for designing drugs to combine with conventional anticancer drugs to overcome MDR-mediated by MRP7.Entities:
Keywords: 1,2,3-Triazole-pyrimidine hybrid; ABC transporters; ABCC10; MRP7; Multidrug resistance
Year: 2021 PMID: 34126072 DOI: 10.1016/j.bcp.2021.114652
Source DB: PubMed Journal: Biochem Pharmacol ISSN: 0006-2952 Impact factor: 5.858