1
Return

Decoding the microbiome and resistome of advanced chronic liver disease through long-read metagenomics

delete2026-08-13
delete0
delete
OA
AI
H
Hannah Trivett
M
Matthew J. Dalby
N
Ned Peel
D
Darren Heavens
R
Raymond Kiu
A
Antia Acuna-Gonzalez
M
Merianne Mohamad
G
Gul Humayun
R
Richard M. Leggett
V
Vishal C. Patel
L
Lindsay J. Hall *
DOI:10.1186/s13073-026-01724-9delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Patients with advanced chronic liver disease (ACLD) and underlying cirrhosis frequently require repeated courses of antimicrobial therapy, with both the frequency and spectrum of antimicrobial exposure increasing alongside disease progression. In this population, impaired immune function and increased intestinal barrier dysfunction contribute to a heightened susceptibility of multidrug-resistant bacterial infections. To comprehensively characterise the gastrointestinal microbiome and antimicrobial resistance gene (ARG) landscape across the clinical spectrum of ACLD, and to identify microbial and resistome signatures associated with disease severity, we employed long-read metagenomic sequencing (Oxford Nanopore Technologies) to profile the gastrointestinal microbiome and resistome in patients with acute-on-chronic liver failure (ACLF), decompensated cirrhosis (DC), and stable cirrhosis (SC), compared to healthy controls (HC). ACLF patients showed marked enrichment of Enterococcus faecium, with six of 28 samples showing >95% relative abundance, highlighting its potential as a bacterial biomarker of advanced cirrhosis. We reconstructed 28 high-quality metagenome-assembled genomes (MAGs) of E. faecium from cirrhosis patients, 17 from ACLF cases. E. faecium dominance was associated with substantially reduced microbial diversity and a marked depletion of key commensal taxa, including Blautia, Akkermansia, Faecalibacterium, and Bifidobacterium. Consistent with these compositional shifts, resistome analysis revealed significant enrichment of clinically relevant antimicrobial resistance genes (ARGs) in DC and ACLF, including determinants conferring resistance to aminoglycosides, beta-lactams, and glycopeptides, consistent with prior antimicrobial exposure. Long-read metagenomics enables high-resolution characterisation of microbial and resistome dynamics across ACLD severities. By capturing taxonomic shifts, functional potential, and ARG enrichment, this approach provides valuable insights into microbiome trajectories linked with disease severity, informing mechanistic research and potential clinical interventions.
Keywords:
Advanced chronic liver disease (ACLD)
Cirrhosis
Long-read metagenomics
Oxford Nanopore Technologies
Gut microbiome
Resistome
Antimicrobial resistance (AMR)
Enterococcus faecium
Metagenome-assembled genomes (MAGs)
Acute-on-chronic liver failure (ACLF)

Journal

Genome Medicine cover
Genome Medicine
IF:
11.2
Papers:
2.3K
Citations:
1.4W

Organization

Q
quadram institute bioscience
Scholars:
114
Papers: 39
Citations: 0
C
college of medicine and health
Scholars:
126
Papers: 46
Citations: 0
K
king's college london
Scholars:
4.7K
Papers: 2.3K
Citations: 0
E
Earlham Institute
Scholars:
349
Papers: 180
Citations: 1.3K
Cited Papers

Cited Papers

Citing Papers

Citing Papers