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Black Raspberries Suppress Colorectal Cancer by Enhancing Smad4 Expression in Colonic Epithelium and Natural Killer Cells

Innate immune cells in the tumor microenvironment have been proposed to control the transition from benign to malignant stages. In many cancers, increased infiltration of natural killer (NK) cells associates with good prognosis. Although the mechanisms that enable NK cells to restrain colorectal can...

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Autores principales: Huang, Yi-Wen, Lin, Chien-Wei, Pan, Pan, Shan, Tianjiao, Echeveste, Carla Elena, Mo, Yue Yang, Wang, Hsin-Tzu, Aldakkak, Mohammed, Tsai, Susan, Oshima, Kiyoko, Yearsley, Martha, Xiao, Jianbo, Cao, Hui, Sun, Chongde, Du, Ming, Bai, Weibin, Yu, Jianhua, Wang, Li-Shu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7793748/
https://www.ncbi.nlm.nih.gov/pubmed/33424832
http://dx.doi.org/10.3389/fimmu.2020.570683
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author Huang, Yi-Wen
Lin, Chien-Wei
Pan, Pan
Shan, Tianjiao
Echeveste, Carla Elena
Mo, Yue Yang
Wang, Hsin-Tzu
Aldakkak, Mohammed
Tsai, Susan
Oshima, Kiyoko
Yearsley, Martha
Xiao, Jianbo
Cao, Hui
Sun, Chongde
Du, Ming
Bai, Weibin
Yu, Jianhua
Wang, Li-Shu
author_facet Huang, Yi-Wen
Lin, Chien-Wei
Pan, Pan
Shan, Tianjiao
Echeveste, Carla Elena
Mo, Yue Yang
Wang, Hsin-Tzu
Aldakkak, Mohammed
Tsai, Susan
Oshima, Kiyoko
Yearsley, Martha
Xiao, Jianbo
Cao, Hui
Sun, Chongde
Du, Ming
Bai, Weibin
Yu, Jianhua
Wang, Li-Shu
author_sort Huang, Yi-Wen
collection PubMed
description Innate immune cells in the tumor microenvironment have been proposed to control the transition from benign to malignant stages. In many cancers, increased infiltration of natural killer (NK) cells associates with good prognosis. Although the mechanisms that enable NK cells to restrain colorectal cancer (CRC) are unclear, the current study suggests the involvement of Smad4. We found suppressed Smad4 expression in circulating NK cells of untreated metastatic CRC patients. Moreover, NK cell-specific Smad4 deletion promoted colon adenomas in DSS-treated Apc(Min/+) mice and adenocarcinomas in AOM/DSS-treated mice. Other studies have shown that Smad4 loss or weak expression in colonic epithelium associates with poor survival in CRC patients. Therefore, targeting Smad4 in both colonic epithelium and NK cells could provide an excellent opportunity to manage CRC. Toward this end, we showed that dietary intervention with black raspberries (BRBs) increased Smad4 expression in colonic epithelium in patients with FAP or CRC and in the two CRC mouse models. Also, benzoate metabolites of BRBs, such as hippurate, upregulated Smad4 and Gzmb expression that might enhance the cytotoxicity of primary human NK cells. Of note, increased levels of hippurate is a metabolomic marker of a healthy gut microbiota in humans, and hippurate also has antitumor effects. In conclusion, our study suggests a new mechanism for the action of benzoate metabolites derived from plant-based foods. This mechanism could be exploited clinically to upregulate Smad4 in colonic epithelium and NK cells, thereby delaying CRC progression.
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spelling pubmed-77937482021-01-09 Black Raspberries Suppress Colorectal Cancer by Enhancing Smad4 Expression in Colonic Epithelium and Natural Killer Cells Huang, Yi-Wen Lin, Chien-Wei Pan, Pan Shan, Tianjiao Echeveste, Carla Elena Mo, Yue Yang Wang, Hsin-Tzu Aldakkak, Mohammed Tsai, Susan Oshima, Kiyoko Yearsley, Martha Xiao, Jianbo Cao, Hui Sun, Chongde Du, Ming Bai, Weibin Yu, Jianhua Wang, Li-Shu Front Immunol Immunology Innate immune cells in the tumor microenvironment have been proposed to control the transition from benign to malignant stages. In many cancers, increased infiltration of natural killer (NK) cells associates with good prognosis. Although the mechanisms that enable NK cells to restrain colorectal cancer (CRC) are unclear, the current study suggests the involvement of Smad4. We found suppressed Smad4 expression in circulating NK cells of untreated metastatic CRC patients. Moreover, NK cell-specific Smad4 deletion promoted colon adenomas in DSS-treated Apc(Min/+) mice and adenocarcinomas in AOM/DSS-treated mice. Other studies have shown that Smad4 loss or weak expression in colonic epithelium associates with poor survival in CRC patients. Therefore, targeting Smad4 in both colonic epithelium and NK cells could provide an excellent opportunity to manage CRC. Toward this end, we showed that dietary intervention with black raspberries (BRBs) increased Smad4 expression in colonic epithelium in patients with FAP or CRC and in the two CRC mouse models. Also, benzoate metabolites of BRBs, such as hippurate, upregulated Smad4 and Gzmb expression that might enhance the cytotoxicity of primary human NK cells. Of note, increased levels of hippurate is a metabolomic marker of a healthy gut microbiota in humans, and hippurate also has antitumor effects. In conclusion, our study suggests a new mechanism for the action of benzoate metabolites derived from plant-based foods. This mechanism could be exploited clinically to upregulate Smad4 in colonic epithelium and NK cells, thereby delaying CRC progression. Frontiers Media S.A. 2020-12-14 /pmc/articles/PMC7793748/ /pubmed/33424832 http://dx.doi.org/10.3389/fimmu.2020.570683 Text en Copyright © 2020 Huang, Lin, Pan, Shan, Echeveste, Mo, Wang, Aldakkak, Tsai, Oshima, Yearsley, Xiao, Cao, Sun, Du, Bai, Yu and Wang http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Huang, Yi-Wen
Lin, Chien-Wei
Pan, Pan
Shan, Tianjiao
Echeveste, Carla Elena
Mo, Yue Yang
Wang, Hsin-Tzu
Aldakkak, Mohammed
Tsai, Susan
Oshima, Kiyoko
Yearsley, Martha
Xiao, Jianbo
Cao, Hui
Sun, Chongde
Du, Ming
Bai, Weibin
Yu, Jianhua
Wang, Li-Shu
Black Raspberries Suppress Colorectal Cancer by Enhancing Smad4 Expression in Colonic Epithelium and Natural Killer Cells
title Black Raspberries Suppress Colorectal Cancer by Enhancing Smad4 Expression in Colonic Epithelium and Natural Killer Cells
title_full Black Raspberries Suppress Colorectal Cancer by Enhancing Smad4 Expression in Colonic Epithelium and Natural Killer Cells
title_fullStr Black Raspberries Suppress Colorectal Cancer by Enhancing Smad4 Expression in Colonic Epithelium and Natural Killer Cells
title_full_unstemmed Black Raspberries Suppress Colorectal Cancer by Enhancing Smad4 Expression in Colonic Epithelium and Natural Killer Cells
title_short Black Raspberries Suppress Colorectal Cancer by Enhancing Smad4 Expression in Colonic Epithelium and Natural Killer Cells
title_sort black raspberries suppress colorectal cancer by enhancing smad4 expression in colonic epithelium and natural killer cells
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7793748/
https://www.ncbi.nlm.nih.gov/pubmed/33424832
http://dx.doi.org/10.3389/fimmu.2020.570683
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