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PMID: 23803760 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Obesity-induced gut microbial metabolite promotes liver cancer through senescence secretome.

Nature ·Vol. 499 ·No. 7456 ·2013-07-04 ·Pages 97-101

Yoshimoto S, Loo TM, Atarashi K, Kanda H, Sato S, Oyadomari S, Iwakura Y, Oshima K, Morita H, Hattori M, Hattori M, Honda K, Ishikawa Y, Hara E, Ohtani N

Abstract

Obesity has become more prevalent in most developed countries over the past few decades, and is increasingly recognized as a major risk factor for several common types of cancer. As the worldwide obesity epidemic has shown no signs of abating, better understanding of the mechanisms underlying obesity-associated cancer is urgently needed. Although several events were proposed to be involved in obesity-associated cancer, the exact molecular mechanisms that integrate these events have remained largely unclear. Here we show that senescence-associated secretory phenotype (SASP) has crucial roles in promoting obesity-associated hepatocellular carcinoma (HCC) development in mice. Dietary or genetic obesity induces alterations of gut microbiota, thereby increasing the levels of deoxycholic acid (DCA), a gut bacterial metabolite known to cause DNA damage. The enterohepatic circulation of DCA provokes SASP phenotype in hepatic stellate cells (HSCs), which in turn secretes various inflammatory and tumour-promoting factors in the liver, thus facilitating HCC development in mice after exposure to chemical carcinogen. Notably, blocking DCA production or reducing gut bacteria efficiently prevents HCC development in obese mice. Similar results were also observed in mice lacking an SASP inducer or depleted of senescent HSCs, indicating that the DCA-SASP axis in HSCs has key roles in obesity-associated HCC development. Moreover, signs of SASP were also observed in the HSCs in the area of HCC arising in patients with non-alcoholic steatohepatitis, indicating that a similar pathway may contribute to at least certain aspects of obesity-associated HCC development in humans as well. These findings provide valuable new insights into the development of obesity-associated cancer and open up new possibilities for its control.

MeSH Terms
Animals Anti-Bacterial Agents/pharmacology Bacteria/metabolism Bile Acids and Salts/metabolism Carcinoma, Hepatocellular/complications,etiology,metabolism,prevention & control Cells, Cultured Cellular Senescence/drug effects Cytokines/metabolism DNA Damage/drug effects Deoxycholic Acid/blood,metabolism Dietary Fats/adverse effects,pharmacology Disease Models, Animal Fatty Liver/complications,pathology Gastrointestinal Tract/drug effects,metabolism,microbiology Hepatic Stellate Cells/cytology,drug effects,metabolism Humans Interleukin-1beta/deficiency Liver Neoplasms/complications,etiology,metabolism,prevention & control Male Mice Mice, Inbred C57BL Non-alcoholic Fatty Liver Disease Obesity/chemically induced,metabolism Phenotype Risk Factors
Chemicals
Anti-Bacterial Agents Bile Acids and Salts Cytokines Dietary Fats Interleukin-1beta Deoxycholic Acid
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Yoshimoto Shin
Division of Cancer Biology, Cancer Institute, Japanese Foundation for Cancer Research, Koto-ku, Tokyo 135-8550, Japan.
Loo Tze Mun
Atarashi Koji
Kanda Hiroaki
Sato Seidai
Oyadomari Seiichi
Iwakura Yoichiro
Oshima Kenshiro
Morita Hidetoshi
Hattori Masahira
Hattori Masahisa
Honda Kenya
Ishikawa Yuichi
Hara Eiji
Ohtani Naoko
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Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2013-07-04
Epub
2013-00-26
Pages
97-101
Language
English
Region
England
NLM ID
0410462
Subset
IM
Corrections
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