Kim Mi Kyoung, Kim Yunyoung, Choo Hyunah, Chong Youhoon
Department of Integrative Bioscience and Biotechnology, Bio/Molecular Informatics Center, Konkuk University, Hwayang-dong, Gwangjin-gu, Seoul 143-701, Republic of Korea.
Center for Neuro-Medicine, Korea Institute of Science and Technology, 39-1 Hawolgok-dong, Seoungbuk-gu, Seoul 136-791, Republic of Korea; Department of Biological Chemistry, Korea University of Science and Technology, Youseong-gu, Daejeon 305-350, Republic of Korea.
Bioorg Med Chem. 2017 Feb 1;25(3):1219-1226. doi: 10.1016/j.bmc.2016.12.034. Epub 2016 Dec 23.
Previously, we have reported remarkable effect of a quercetin-glutamic acid conjugate to reverse multidrug resistance (MDR) of cancer cells to a broad spectrum of anticancer agents through inhibition of P-glycoprotein (Pgp)-mediated drug efflux. Due to the hydrolysable nature, MDR-reversal activity of the quercetin conjugate was attributed to its hydrolysis product, quercetin. However, several lines of evidence demonstrated that the intact quercetin-glutamic acid conjugate has stronger MDR-reversal activity than quercetin. In order to evaluate this hypothesis and to identify a novel scaffold for MDR-reversal agents, we prepared quercetin conjugates with a glutamic acid attached at the 7-O position via a non-hydrolysable linker. Pgp inhibition assay, Pgp ATPase assay, and MDR-reversal activity assay were performed, and the non-hydrolysable quercetin conjugates showed significantly higher activities compared with those of quercetin. Unfortunately, the quercetin conjugates were not as effective as verapamil in Pgp-inhibition and thereby reversing MDR, but it is worth to note that the structurally modified quercetin conjugates with a non-cleavable linker showed significantly improved MDR-reversal activity compared with quercetin. Taken together, the quercetin conjugates with appropriate structural modifications were shown to have a potential to serve as a scaffold for the design of novel MDR-reversal agents.
此前,我们报道了一种槲皮素 - 谷氨酸共轭物通过抑制P - 糖蛋白(Pgp)介导的药物外排,对癌细胞对多种抗癌药物的多药耐药性(MDR)具有显著的逆转作用。由于其可水解的性质,槲皮素共轭物的MDR逆转活性归因于其水解产物槲皮素。然而,多项证据表明,完整的槲皮素 - 谷氨酸共轭物比槲皮素具有更强的MDR逆转活性。为了评估这一假设并确定一种新型的MDR逆转剂支架,我们制备了通过不可水解连接子在7 - O位连接谷氨酸的槲皮素共轭物。进行了Pgp抑制试验、Pgp ATP酶试验和MDR逆转活性试验,结果表明不可水解的槲皮素共轭物的活性明显高于槲皮素。遗憾的是,槲皮素共轭物在抑制Pgp从而逆转MDR方面不如维拉帕米有效,但值得注意的是,与槲皮素相比,具有不可裂解连接子的结构修饰槲皮素共轭物的MDR逆转活性显著提高。综上所述,具有适当结构修饰的槲皮素共轭物显示出有潜力作为设计新型MDR逆转剂的支架。