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Sesamol suppresses cyclooxygenase-2 transcriptional activity in colon cancer cells and modifies intestinal polyp development in Apc(Min/+) mice

Excessive prostaglandin production by cyclooxygenase-2 in stromal and epithelial cells is a causative factor of colorectal carcinogenesis. Thus, compounds which inhibit cyclooxygenase-2 transcriptional activity in colon epithelial cells could be candidates for anti-carcinogenic agents. A cyclooxygen...

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Autores principales: Shimizu, Satomi, Fujii, Gen, Takahashi, Mami, Nakanishi, Ruri, Komiya, Masami, Shimura, Misato, Noma, Nobuharu, Onuma, Wakana, Terasaki, Masaru, Yano, Tomohiro, Mutoh, Michihiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: the Society for Free Radical Research Japan 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3947973/
https://www.ncbi.nlm.nih.gov/pubmed/24688218
http://dx.doi.org/10.3164/jcbn.13-91
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author Shimizu, Satomi
Fujii, Gen
Takahashi, Mami
Nakanishi, Ruri
Komiya, Masami
Shimura, Misato
Noma, Nobuharu
Onuma, Wakana
Terasaki, Masaru
Yano, Tomohiro
Mutoh, Michihiro
author_facet Shimizu, Satomi
Fujii, Gen
Takahashi, Mami
Nakanishi, Ruri
Komiya, Masami
Shimura, Misato
Noma, Nobuharu
Onuma, Wakana
Terasaki, Masaru
Yano, Tomohiro
Mutoh, Michihiro
author_sort Shimizu, Satomi
collection PubMed
description Excessive prostaglandin production by cyclooxygenase-2 in stromal and epithelial cells is a causative factor of colorectal carcinogenesis. Thus, compounds which inhibit cyclooxygenase-2 transcriptional activity in colon epithelial cells could be candidates for anti-carcinogenic agents. A cyclooxygenase-2 transcriptional activity in the human colon cancer cell line DLD-1 has been measured using a β-galactosidase reporter gene system. Using this system, we demonstrated that the decrease in basal cyclooxygenase-2 transcriptional activities at 100 µM sesamol, one of the lignans in sesame seeds, was 50%. Other compounds in sesame seeds such as sesamin, sesamolin, ferulic acid, and syringic acid did not exhibit significant suppression of cyclooxygenase-2 transcriptional activity at up to 100 µM. In a following experiment, 6-week-old male Min mice, Apc-deficient mice, were divided into a non-treated and 500 ppm sesamol groups. At the age of 15 weeks, it was found that treatment with sesamol decreased the number of polyps in the middle part of small intestine to 66.1% of the untreated value. Moreover, sesamol suppressed cyclooxygenase-2 and cytosolic prostaglandin E(2) synthase mRNA in the polyp parts. The present findings may demonstrate the novel anti-carcinogenetic property of sesamol, and imply that agents that can suppress cyclooxygenase-2 expression may be useful cancer chemopreventive agents.
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spelling pubmed-39479732014-03-31 Sesamol suppresses cyclooxygenase-2 transcriptional activity in colon cancer cells and modifies intestinal polyp development in Apc(Min/+) mice Shimizu, Satomi Fujii, Gen Takahashi, Mami Nakanishi, Ruri Komiya, Masami Shimura, Misato Noma, Nobuharu Onuma, Wakana Terasaki, Masaru Yano, Tomohiro Mutoh, Michihiro J Clin Biochem Nutr Original Article Excessive prostaglandin production by cyclooxygenase-2 in stromal and epithelial cells is a causative factor of colorectal carcinogenesis. Thus, compounds which inhibit cyclooxygenase-2 transcriptional activity in colon epithelial cells could be candidates for anti-carcinogenic agents. A cyclooxygenase-2 transcriptional activity in the human colon cancer cell line DLD-1 has been measured using a β-galactosidase reporter gene system. Using this system, we demonstrated that the decrease in basal cyclooxygenase-2 transcriptional activities at 100 µM sesamol, one of the lignans in sesame seeds, was 50%. Other compounds in sesame seeds such as sesamin, sesamolin, ferulic acid, and syringic acid did not exhibit significant suppression of cyclooxygenase-2 transcriptional activity at up to 100 µM. In a following experiment, 6-week-old male Min mice, Apc-deficient mice, were divided into a non-treated and 500 ppm sesamol groups. At the age of 15 weeks, it was found that treatment with sesamol decreased the number of polyps in the middle part of small intestine to 66.1% of the untreated value. Moreover, sesamol suppressed cyclooxygenase-2 and cytosolic prostaglandin E(2) synthase mRNA in the polyp parts. The present findings may demonstrate the novel anti-carcinogenetic property of sesamol, and imply that agents that can suppress cyclooxygenase-2 expression may be useful cancer chemopreventive agents. the Society for Free Radical Research Japan 2014-03 2014-02-19 /pmc/articles/PMC3947973/ /pubmed/24688218 http://dx.doi.org/10.3164/jcbn.13-91 Text en Copyright © 2014 JCBN This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Shimizu, Satomi
Fujii, Gen
Takahashi, Mami
Nakanishi, Ruri
Komiya, Masami
Shimura, Misato
Noma, Nobuharu
Onuma, Wakana
Terasaki, Masaru
Yano, Tomohiro
Mutoh, Michihiro
Sesamol suppresses cyclooxygenase-2 transcriptional activity in colon cancer cells and modifies intestinal polyp development in Apc(Min/+) mice
title Sesamol suppresses cyclooxygenase-2 transcriptional activity in colon cancer cells and modifies intestinal polyp development in Apc(Min/+) mice
title_full Sesamol suppresses cyclooxygenase-2 transcriptional activity in colon cancer cells and modifies intestinal polyp development in Apc(Min/+) mice
title_fullStr Sesamol suppresses cyclooxygenase-2 transcriptional activity in colon cancer cells and modifies intestinal polyp development in Apc(Min/+) mice
title_full_unstemmed Sesamol suppresses cyclooxygenase-2 transcriptional activity in colon cancer cells and modifies intestinal polyp development in Apc(Min/+) mice
title_short Sesamol suppresses cyclooxygenase-2 transcriptional activity in colon cancer cells and modifies intestinal polyp development in Apc(Min/+) mice
title_sort sesamol suppresses cyclooxygenase-2 transcriptional activity in colon cancer cells and modifies intestinal polyp development in apc(min/+) mice
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3947973/
https://www.ncbi.nlm.nih.gov/pubmed/24688218
http://dx.doi.org/10.3164/jcbn.13-91
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