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Antibiotics suppress colon tumorigenesis through inhibition of aberrant DNA methylation in an azoxymethane and dextran sulfate sodium colitis model

Chronic inflammation is involved in the development of colon cancer by inducing mutations and aberrant DNA methylation in colon epithelial cells. Furthermore, there is growing evidence that colonic microbiota modulates the inflammation response in the host and influences colon tumorigenesis. However...

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Autores principales: Hattori, Naoko, Niwa, Tohru, Ishida, Tatsuya, Kobayashi, Kyosuke, Imai, Toshio, Mori, Akiko, Kimura, Kana, Mori, Takeshi, Asami, Yukio, Ushijima, Toshikazu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6317928/
https://www.ncbi.nlm.nih.gov/pubmed/30443963
http://dx.doi.org/10.1111/cas.13880
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author Hattori, Naoko
Niwa, Tohru
Ishida, Tatsuya
Kobayashi, Kyosuke
Imai, Toshio
Mori, Akiko
Kimura, Kana
Mori, Takeshi
Asami, Yukio
Ushijima, Toshikazu
author_facet Hattori, Naoko
Niwa, Tohru
Ishida, Tatsuya
Kobayashi, Kyosuke
Imai, Toshio
Mori, Akiko
Kimura, Kana
Mori, Takeshi
Asami, Yukio
Ushijima, Toshikazu
author_sort Hattori, Naoko
collection PubMed
description Chronic inflammation is involved in the development of colon cancer by inducing mutations and aberrant DNA methylation in colon epithelial cells. Furthermore, there is growing evidence that colonic microbiota modulates the inflammation response in the host and influences colon tumorigenesis. However, the influence of colonic microbiota on aberrant DNA methylation remains unknown. Here, we show the effect of colonic microbes on DNA methylation and tumorigenicity using a mouse model of human ulcerative colitis. Mice treated with azoxymethane (AOM) and dextran sulfate sodium (DSS) showed an increase in degree of colitis, as estimated by body weight, occult blood, and stool consistency/diarrhea at 2 weeks after treatment, but treatment with antibiotics markedly reduced the severity of the colitis. Although mucosal hyperplasia and increased inflammation‐related genes were observed in the colonic epithelial cells of the AOM/DSS‐treated mice, treatment with antibiotics abrogated these changes. In addition, treatment with antibiotics significantly decreased the number of mucosal nodules from 5.9 ± 5.3 to 0.2 ± 0.6 (P < .01) and area of occupancy from 50.1 ± 57.4 to 0.5 ± 1.4 mm(2) (P < .01). Aberrant DNA methylation of three marker CpG islands (Cbln4, Fosb, and Msx1) was induced by AOM/DSS treatment in colonic mucosae, but this increase was suppressed by 50%‐92% (P < .05) with antibiotic treatment. Microbiome analysis showed that this change was associated with a decrease of the Clostridium leptum subgroup. These data indicate that antibiotics suppressed tumorigenesis through inhibition of aberrant DNA methylation induced by chronic inflammation.
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spelling pubmed-63179282019-01-08 Antibiotics suppress colon tumorigenesis through inhibition of aberrant DNA methylation in an azoxymethane and dextran sulfate sodium colitis model Hattori, Naoko Niwa, Tohru Ishida, Tatsuya Kobayashi, Kyosuke Imai, Toshio Mori, Akiko Kimura, Kana Mori, Takeshi Asami, Yukio Ushijima, Toshikazu Cancer Sci Original Articles Chronic inflammation is involved in the development of colon cancer by inducing mutations and aberrant DNA methylation in colon epithelial cells. Furthermore, there is growing evidence that colonic microbiota modulates the inflammation response in the host and influences colon tumorigenesis. However, the influence of colonic microbiota on aberrant DNA methylation remains unknown. Here, we show the effect of colonic microbes on DNA methylation and tumorigenicity using a mouse model of human ulcerative colitis. Mice treated with azoxymethane (AOM) and dextran sulfate sodium (DSS) showed an increase in degree of colitis, as estimated by body weight, occult blood, and stool consistency/diarrhea at 2 weeks after treatment, but treatment with antibiotics markedly reduced the severity of the colitis. Although mucosal hyperplasia and increased inflammation‐related genes were observed in the colonic epithelial cells of the AOM/DSS‐treated mice, treatment with antibiotics abrogated these changes. In addition, treatment with antibiotics significantly decreased the number of mucosal nodules from 5.9 ± 5.3 to 0.2 ± 0.6 (P < .01) and area of occupancy from 50.1 ± 57.4 to 0.5 ± 1.4 mm(2) (P < .01). Aberrant DNA methylation of three marker CpG islands (Cbln4, Fosb, and Msx1) was induced by AOM/DSS treatment in colonic mucosae, but this increase was suppressed by 50%‐92% (P < .05) with antibiotic treatment. Microbiome analysis showed that this change was associated with a decrease of the Clostridium leptum subgroup. These data indicate that antibiotics suppressed tumorigenesis through inhibition of aberrant DNA methylation induced by chronic inflammation. John Wiley and Sons Inc. 2018-12-13 2019-01 /pmc/articles/PMC6317928/ /pubmed/30443963 http://dx.doi.org/10.1111/cas.13880 Text en © 2018 The Authors. Cancer Science published by John Wiley & Sons Australia, Ltd on behalf of Japanese Cancer Association. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Articles
Hattori, Naoko
Niwa, Tohru
Ishida, Tatsuya
Kobayashi, Kyosuke
Imai, Toshio
Mori, Akiko
Kimura, Kana
Mori, Takeshi
Asami, Yukio
Ushijima, Toshikazu
Antibiotics suppress colon tumorigenesis through inhibition of aberrant DNA methylation in an azoxymethane and dextran sulfate sodium colitis model
title Antibiotics suppress colon tumorigenesis through inhibition of aberrant DNA methylation in an azoxymethane and dextran sulfate sodium colitis model
title_full Antibiotics suppress colon tumorigenesis through inhibition of aberrant DNA methylation in an azoxymethane and dextran sulfate sodium colitis model
title_fullStr Antibiotics suppress colon tumorigenesis through inhibition of aberrant DNA methylation in an azoxymethane and dextran sulfate sodium colitis model
title_full_unstemmed Antibiotics suppress colon tumorigenesis through inhibition of aberrant DNA methylation in an azoxymethane and dextran sulfate sodium colitis model
title_short Antibiotics suppress colon tumorigenesis through inhibition of aberrant DNA methylation in an azoxymethane and dextran sulfate sodium colitis model
title_sort antibiotics suppress colon tumorigenesis through inhibition of aberrant dna methylation in an azoxymethane and dextran sulfate sodium colitis model
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6317928/
https://www.ncbi.nlm.nih.gov/pubmed/30443963
http://dx.doi.org/10.1111/cas.13880
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