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  4. Polymethoxyflavones prevent benzo[a ]pyrene/dextran sodium sulfate-induced colorectal carcinogenesis through modulating xenobiotic metabolism and ameliorate autophagic defect in ICR mice
 
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Polymethoxyflavones prevent benzo[a ]pyrene/dextran sodium sulfate-induced colorectal carcinogenesis through modulating xenobiotic metabolism and ameliorate autophagic defect in ICR mice

Journal
International Journal of Cancer
Journal Volume
142
Journal Issue
8
Pages
1689--1701
Date Issued
2018-04
Author(s)
Jia-Ching Wu
Mei-Ling Tsai
Ching-Shu Lai
Chih-Yu Lo
Chi-Tang Ho
Ying-Jan Wang
MIN-HSIUNG PAN  
DOI
10.1002/ijc.31190
URI
https://doi.org/10.1002/ijc.31190
http://scholars.lib.ntu.edu.tw/handle/123456789/402401
Abstract
Polycyclic aromatic hydrocarbons (PAHs) are widespread environmental carcinogenic pollutants and they have become an important issue in food contamination. Dietary intake of PAHs has been recognized as a major route of human exposure. However, the mechanisms behind dietary PAH-induced colorectal cancer (CRC) remain unclear. Several studies have shown that polymethoxyflavones (PMFs) are effective in preventing carcinogen-induced CRC or colitis. In this study, we investigated the preventive effect of PMFs on benzo[a]pyrene/dextran sulfate sodium (BaP/DSS)-induced colorectal tumorigenesis in ICR mice. We found that PMFs significantly prevented BaP/DSS-induced colorectal tumor formation. BaP mutagenic metabolite and DNA adducts were found to be reduced in colonic tissue in the PMFs-treated groups through the modulation of BaP metabolism. At the molecular level, the results of RNA-sequencing indicated that PMFs ameliorated BaP/DSS-induced abnormal molecular mechanism change including activated inflammation, downregulated anti-oxidation targets, and induced metastasis genes. The autophagic defect caused by BaP/DSS-induced tumorigenesis was improved by pretreatment with PMFs. We found BaP/DSS-induced CRC may be a Wnt/β-catenin independent process. Additionally, consumption of PMFs extracts also altered the composition of gut microbiota and made it similar to that in the control group by increasing butyrate-producing probiotics and decreasing CRC-related bacteria. BaP in combination with DSS significantly induced colorectal tumorigenesis through induced DNA adduct formation, abnormal gene expression, and imbalanced gut microbiota composition. PMFs were a powerful preventive agent that suppressed BaP/DSS-induced CRC via modulating multiple pathways as well as ameliorating autophagic defect. These results demonstrated for the first time the chemopreventive efficacy and comprehensive mechanisms of dietary PMFs for preventing BaP/DSS-induced colorectal carcinogenesis. ? 2017 UICC
Subjects
autophagic defect; colorectal cancer; microbiota; polycyclic aromatic hydrocarbons; polymethoxyflavones
SDGs

[SDGs]SDG3

Other Subjects
beta catenin; butyric acid; dextran sulfate; flavone derivative; hydroxybenzo[a]pyrene; polymethoxyflavone derivative; probiotic agent; unclassified drug; Wnt protein; xenobiotic agent; 5,6,2',3',6'-pentamethoxyflavone; benzo[a]pyrene; carcinogen; dextran sulfate; flavone derivative; mutagenic agent; animal cell; animal experiment; animal model; animal tissue; antineoplastic activity; Article; autophagy; carcinogenesis; colon tissue; colorectal cancer; controlled study; DNA adduct; down regulation; drug efficacy; gene; gene expression; inflammation; Institute for Cancer Research mouse; intestine flora; male; metabolism; metabolite; metastasis; metastasis gene; mouse; nonhuman; priority journal; RNA sequence; animal; autophagy; carcinogenesis; chemically induced; colitis; colorectal tumor; drug effect; Animals; Autophagy; Benzo(a)pyrene; Carcinogenesis; Carcinogens, Environmental; Colitis; Colorectal Neoplasms; Dextran Sulfate; Flavones; Male; Mice; Mice, Inbred ICR; Mutagens
Type
journal article
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