- AUTORI Chiara Degirolamo, Salvatore Modica, Michele Vacca, Giuseppe Di Tullio, Annalisa Morgano, Andria D’Orazio, Kristina Kannisto, Paolo Parini, and Antonio Moschetta
- PUBBLICATO DA Hepatology
- DATA PUBBLICAZIONE Gennaio 2015
- DOI https://doi.org/10.1002/hep.27274
Abstract
Farnesoid X receptor (FXR) is the master regulator of bile acid (BA) homeostasis because it controls BA synthesis, influx, efflux, and detoxification in the gut/liver axis. Deregulation of BA homeostasis has been linked to hepatocellular carcinoma (HCC), and spontaneous hepatocarcinogenesis has been observed in FXR-null mice. This dreaded liver neoplasm has been associated with both FXR gene deletion and BA-mediated metabolic abnormalities after inactivation of FXR transcriptional activity. In the present study, we addressed the hypothesis that intestinal selective FXR reactivation would be sufficient to restore the fibroblast growth factor 15 (FGF15)/ cholesterol-7alpha-hydroxylase (Cyp7a1) enterohepatic axis and eventually provide protection againstHCC. To this end, we generated FXR-null mice with re-expression of constitutively active FXR in enterocytes (FXR2/2iVP16FXR) and corresponding control mice (FXR2/2iVP16). In FXR-null mice, intestinal selective FXR reactivation normalized BA enterohepatic circulation along with up-regulation of intestinal FXR transcriptome and reduction of hepatic BA synthesis. At 16 months of age, intestinal FXR reactivation protected FXR-null mice from spontaneous HCC development that occurred in otherwise FXR-null mice. Activation of intestinal FXR conferred hepatoprotection by restoring hepatic homeostasis, limiting cellular proliferation through reduced cyclinD1 expression, decreasing hepatic inflammation and fibrosis (decreased signal transducer and activator of transcription 3 activation and curtailed collagen deposition). Conclusion: Intestinal FXR is sufficient to restore BA homeostasis through the FGF15 axis and prevent progression of liver damage to HCC even in the absence of hepatic FXR. Intestinal-selective FXR modulators could stand as potential therapeutic intervention to prevent this devastating hepatic malignancy, even if carrying a somatic FXRmutation
Citazioni
- ACS Style Degirolamo, C.; Modica, S.; Vacca, M.; Di Tullio, G.; Morgano, A.; D'Orazio, A.; Kannisto, K.; Parini, P.; Moschetta, A. Prevention of spontaneous hepatocarcinogenesis in farnesoid X receptor-null mice by intestinal-specific farnesoid X receptor reactivation. Hepatology 2015, 61 (1), 161-170. https://doi.org/10.1002/hep.27274.
- AMA Style Degirolamo C, Modica S, Vacca M, et al. Prevention of spontaneous hepatocarcinogenesis in farnesoid X receptor-null mice by intestinal-specific farnesoid X receptor reactivation. Hepatology. 2015;61(1):161-170. doi:10.1002/hep.27274. Epub 2014 Oct 30. PMID: 24954587.
- Chicago/Turabian Style Degirolamo, Chiara, Sabrina Modica, Marta Vacca, Giuseppe Di Tullio, Antonio Morgano, Andrea D'Orazio, Kari Kannisto, Paolo Parini, and Antonio Moschetta. "Prevention of Spontaneous Hepatocarcinogenesis in Farnesoid X Receptor-Null Mice by Intestinal-Specific Farnesoid X Receptor Reactivation." Hepatology 61, no. 1 (2015): 161-170. https://doi.org/10.1002/hep.27274.