Gut-liver axis-mediated mechanism of liver cancer: A special focus on the role of gut microbiota

Cancer Sci. 2021 Nov;112(11):4433-4443. doi: 10.1111/cas.15142. Epub 2021 Sep 27.

Abstract

Gut microbiota and the mammalian host share a symbiotic relationship, in which the host provides a suitable ecosystem for the gut bacteria to digest indigestible nutrients and produce useful metabolites. Although gut microbiota primarily reside in and influence the intestine, they also regulate liver function via absorption and subsequent transfer of microbial components and metabolites through the portal vein to the liver. Due to this transfer, the liver may be continuously exposed to gut-derived metabolites and components. For example, short-chain fatty acids (SCFA) produced by gut microbiota, through the fermentation of dietary fiber, can suppress inflammation via regulatory T cell induction through SCFA-induced epigenetic mechanisms. Additionally, secondary bile acids (BA), such as deoxycholic acid, produced by gut bacteria through the 7α-dehydroxylation of primary BAs, are thought to induce DNA damage and contribute to the remodeling of tumor microenvironments. Other substances that are also thought to influence liver function include lipopolysaccharides (components of the outer membrane of gram-negative bacteria) and lipoteichoic acid (cell wall component of Gram-positive bacteria), which are ligands of innate immune receptors, Toll-like receptor-4, and Toll-like receptor-2, respectively, through which inflammatory signaling is elicited. In this review, we focus on the role of gut microbiota in the liver microenvironment, describing the anatomy of the gut-liver axis, the role of gut microbial metabolites, and the relationships that exist between gut microbiota and liver diseases, including liver cancer.

Keywords: gut microbial metabolites; gut microbiota; gut-liver axis; hepatocellular carcinoma; senescence-associated secretory phenotype.

Publication types

  • Review

MeSH terms

  • Bile Acids and Salts / metabolism
  • Carcinoma, Hepatocellular / etiology*
  • Cellular Senescence / physiology
  • Choline / metabolism
  • DNA Damage
  • Ethanol / metabolism
  • Fatty Acids, Volatile / metabolism
  • Gastrointestinal Microbiome / physiology*
  • Gram-Positive Bacteria / metabolism
  • Hepatitis, Alcoholic / etiology
  • Humans
  • Lipopolysaccharides / metabolism
  • Liver / anatomy & histology
  • Liver / metabolism
  • Liver / physiology*
  • Liver Diseases / etiology
  • Liver Neoplasms / etiology*
  • Liver Neoplasms / microbiology
  • Non-alcoholic Fatty Liver Disease / etiology
  • Symbiosis
  • Teichoic Acids / metabolism
  • Tumor Microenvironment / physiology*

Substances

  • Bile Acids and Salts
  • Fatty Acids, Volatile
  • Lipopolysaccharides
  • Teichoic Acids
  • Ethanol
  • lipoteichoic acid
  • Choline