Impact of liver failure on the circulating extracellular vesicle miRNA repertoire

Author:

Mastoridis Sotiris12,Patel Vishal134,Christakoudi Sofia56,Lozano Juan Jose7,Salehi Siamak1,Kurt Ada1,Grossart Cathleen1,Kodela Elisavet13,Martinez‐Llordella Marc1,Sanchez‐Fueyo Alberto13

Affiliation:

1. Institute of Liver Studies School of Immunology and Microbial Sciences Faculty of Life Sciences and Medicine King's College London London UK

2. Nuffield Department of Surgical Sciences University of Oxford Oxford UK

3. Institute of Liver Studies King's College Hospital NHS Foundation Trust London UK

4. The Roger Williams Institute of Hepatology (Foundation for Liver Research) London UK

5. Department of Epidemiology and Biostatistics Imperial College London London UK

6. Department of Inflammation Biology School of Immunology and Microbial Sciences Faculty of Life Sciences and Medicine King's College London London UK

7. Bioinformatic Platform Biomedical Research Centre in Hepatic and Digestive Diseases Instituto de Salud Carlos III Madrid Spain

Abstract

AbstractBackground & aimsCell‐derived small extracellular vesicles (sEVs) participate in cell–cell communication via the transfer of molecular cargo including selectively enriched microRNAs (miRNAs). Utilizing advances in sEV isolation and characterization, this study investigates the impact of liver injury and dysfunction on the circulating EV‐miRNA profile.MethodsHigh‐throughput screening of 799 sEV‐miRNAs isolated from plasma was performed in patients across a spectrum of liver disorders including compensated and decompensated chronic liver disease, acute‐on‐chronic liver failure (ACLF), and acute liver failure, in addition to healthy controls and those with severe sepsis. miRNA levels were compared with clinical and biochemical parameters, composite scores of liver disease, and patient outcomes.ResultsmiRNA screening revealed the degree of hepatic dysfunction to be the main determinant of changes in circulating sEV‐miRNA profile, with liver‐specific miRNA‐122 being among the most highly dysregulated in severe injury. Principal components analyses of the 215 differentially expressed miRNAs showed differing profiles, particularly among those with acute liver injury and ACLF. A distinct profile of dysregulated miRNA, but not circulating cytokines, was shown to characterize ACLF, with four consensus miRNAs identified—miR‐320e, miR‐374‐5p, miR‐202‐3p, and miR‐1910‐5p. High miR‐320e was associated with poorer 90‐day survival (p = 0.014) and regulated the functional gene targets IK, RPS5, MANBAL, and PEBP1.ConclusionsThis first comprehensive analysis to the best of our knowledge of patients with varying degrees and stages of liver failure demonstrates miRNA profiles specifically within the sEV compartment to be significantly altered in progressive liver disease and highlights the diagnostic and prognostic potential of sEV‐miRNA in ACLF while also establishing downstream gene targets.

Funder

National Institute for Health Research

King's College London

Publisher

Wiley

Subject

Infectious Diseases,Hepatology

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