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Fibroblast growth factor 15/19 (FGF15/19) protects from diet-induced hepatic steatosis: Development of an FGF19-based chimeric molecule to promote fatty liver regeneration

  • Gloria Alvarez-Sola
  • , Iker Uriarte
  • , M. Ujue Latasa
  • , Maite G. Fernandez-Barrena
  • , Raquel Urtasun
  • , Maria Elizalde
  • , Marina Barcena-Varela
  • , Maddalen Jiménez
  • , Haisul C. Chang
  • , Roberto Barbero
  • , Victoria Catalán
  • , Amaia Rodríguez
  • , Gema Frühbeck
  • , José M. Gallego-Escuredo
  • , Aleix Gavaldà-Navarro
  • , Francesc Villarroya
  • , Carlos M. Rodriguez-Ortigosa
  • , Fernando J. Corrales
  • , Jesus Prieto
  • , Pedro Berraondo
  • Carmen Berasain, Matias A. Avila

Research output: Contribution to journalArticlepeer-review

144 Scopus citations

Abstract

Objective Fibroblast growth factor 15/19 (FGF15/19), an enterokine that regulates synthesis of hepatic bile acids (BA), has been proposed to influence fat metabolism. Without FGF15/19, mouse liver regeneration after partial hepatectomy (PH) is severely impaired. We studied the role of FGF15/19 in response to a high fat diet (HFD) and its regulation by saturated fatty acids. We developed a fusion molecule encompassing FGF19 and apolipoprotein A-I, termed Fibapo, and evaluated its pharmacological properties in fatty liver regeneration. Design Fgf15-/- mice were fed a HFD. Liver fat and the expression of fat metabolism and endoplasmic reticulum (ER) stress-related genes were measured. Influence of palmitic acid (PA) on FGF15/19 expression was determined in mice and in human liver cell lines. In vivo half-life and biological activity of Fibapo and FGF19 were compared. Hepatoprotective and proregenerative activities of Fibapo were evaluated in obese db/db mice undergoing PH. Results Hepatosteatosis and ER stress were exacerbated in HFD-fed Fgf15-/- mice. Hepatic expression of Pparã2 was elevated in Fgf15-/- mice, being reversed by FGF19 treatment. PA induced FGF15/19 expression in mouse ileum and human liver cells, and FGF19 protected from PA-mediated ER stress and cytotoxicity. Fibapo reduced liver BA and lipid accumulation, inhibited ER stress and showed enhanced half-life. Fibapo provided increased db/db mice survival and improved regeneration upon PH. Conclusions FGF15/19 is essential for hepatic metabolic adaptation to dietary fat being a physiological regulator of Pparã2 expression. Perioperative administration of Fibapo improves fatty liver regeneration.

Original languageEnglish
Pages (from-to)1818-1828
Number of pages11
JournalGut
Volume66
Issue number10
DOIs
StatePublished - 1 Oct 2017
Externally publishedYes

Keywords

  • Cholestasis
  • Fatty Liver
  • Growth Factors
  • Liver Failure
  • Liver Regeneration

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