Literature DB >> 31196639

Bile Acids and Portal Hypertension.

Juan Pablo Arab1, Francisco Barrera2, Marco Arrese3.   

Abstract

The recent discovery of bile acid (BA) receptors and a better delineation of the multiple roles of BAs in relevant biological processes have revamped BA research. The vasoactive actions of BAs were recognized more than three decades ago but the underlying mechanisms of the BA-induced vasorelaxation are now being clarified. Recent evidence shows that the BA receptors FXR and TGR5 are expressed in endothelial cells and may have important effects on both systemic and portal circulation. The availability of genetically engineered mice with ablation of BA receptors and the development of BA receptor agonists has allowed to explore the modulation of FXR and, in a lesser extent, of TGR5 in the setting of portal hypertension (PHT) with promising results. In this review, we summarize recent data on how BA-dependent pathways influence several processes that impact in PHT and the preclinical data showing that pharmacological modulation of those pathways may hold promise in the treatment of PHT.
Copyright © 2017 Fundación Clínica Médica Sur, A.C. Published by Elsevier España, S.L.U. All rights reserved.

Entities:  

Keywords:  Bacterial translocation; Bile acids; Cirrhosis; Farnesoid X receptor; Fibrosis; Hepatic flow; Inflammation; Intestinal permeability; Portal hypertension

Year:  2017        PMID: 31196639     DOI: 10.5604/01.3001.0010.5500

Source DB:  PubMed          Journal:  Ann Hepatol        ISSN: 1665-2681            Impact factor:   2.400


  1 in total

1.  Cross-Sectional Blood Metabolite Markers of Hypertension: A Multicohort Analysis of 44,306 Individuals from the COnsortium of METabolomics Studies.

Authors:  Panayiotis Louca; Ana Nogal; Aurélie Moskal; Neil J Goulding; Martin J Shipley; Taryn Alkis; Joni V Lindbohm; Jie Hu; Domagoj Kifer; Ni Wang; Bo Chawes; Kathryn M Rexrode; Yoav Ben-Shlomo; Mika Kivimaki; Rachel A Murphy; Bing Yu; Marc J Gunter; Karsten Suhre; Deborah A Lawlor; Massimo Mangino; Cristina Menni
Journal:  Metabolites       Date:  2022-06-28
  1 in total

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