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Co-treatment with quercetin and 1,2,3,4,6-penta- O -galloyl-β- d -glucose causes cell cycle arrest and apoptosis in human breast cancer MDA-MB-231 and AU565 cells
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Co-treatment with quercetin and 1,2,3,4,6-penta- O -galloyl-β- d -glucose causes cell cycle arrest and apoptosis in human breast cancer MDA-MB-231 and AU565 cells

Cheng Huang, Suz-Yi Lee, Chih-Li Lin, Tzu-Huei Tu, Ling Hsuan Chen, Yi Jing ChenHsiu-Chen Huang
Journal of Agricultural and Food Chemistry, 卷.61(26), 頁碼.6430-6445
07/2013
PMID: 23731217

摘要

5GG AU565 MDA-MB231 Que synergistic effect Chemistry (all) Agricultural and Biological Sciences (all)
Breast cancer is the most universal cancer in women, but the medications for breast cancer usually cause serious side effects and offer no effective treatment for triple-negative breast cancer. Here, we investigated the growth inhibitory effects of gallic acid (GA), (-)-epigallocatechin gallate (EGCG), or 1,2,3,4,6-penta-O-galloyl-β-d-glucose (5GG) combined with quercetin (Que) on breast cancer cells. In this study, we tested the combined effects of these compounds on estrogen receptor (ER)/human epidermal growth factor 2 (Her2)-negative (MDA-MB-231), ER-positive/Her2-negative (BT483), and ER-negative/Her2-positive (AU565) breast cancer cells. After treatment of each cell line with these compounds, we found that Que combined with 5GG induced S-phase arrest and apoptosis in MDA-BM-231 cells through downregulation of S-phase kinase protein 2 expression, but induced G2/M-phase arrest and apoptosis in AU565 cells through downregulation of Her2 expression. Additionally, Que combined with 5GG was more effective in inhibiting MDA-MB-231 cell growth than Que combined with EGCG (5GG analogue) or GA. The combination of 5GG and Que can offer great potential for the chemoprevention of ER-negative breast cancer. © 2013 American Chemical Society.

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