Genome-wide DNA methylation and transcriptomic analysis of liver tissues subjected to early ischemia/reperfusion injury upon human liver transplantation.

DNA methylation Ischemia-reperfusion injury cell-type enrichment functional enrichment liver transplantation transcriptomics

Journal

Annals of hepatology
ISSN: 1665-2681
Titre abrégé: Ann Hepatol
Pays: Mexico
ID NLM: 101155885

Informations de publication

Date de publication:
04 May 2024
Historique:
received: 23 02 2024
revised: 11 03 2024
accepted: 27 03 2024
medline: 7 5 2024
pubmed: 7 5 2024
entrez: 6 5 2024
Statut: aheadofprint

Résumé

Epigenetic changes represent a mechanism connecting external stresses with long-term modifications of gene expression programs. In solid organ transplantation, ischemia-reperfusion injury (IRI) appears to induce epigenomic changes in the graft, although the currently available data are extremely limited. The present study aimed to characterize variations in DNA methylation and their effects on the transcriptome in liver transplantation from brain-dead donors. 12 liver grafts were evaluated through serial biopsies at different timings in the procurement-transplantation process: T0 (warm procurement, in donor), T1 (bench surgery), and T2 (after reperfusion, in recipient). DNA methylation (DNAm) and transcriptome profiles of biopsies were analyzed using microarrays and RNAseq. Significant variations in DNAm were identified, particularly between T2 and T0. Functional enrichment of the best 1000 ranked differentially methylated promoters demonstrated that 387 hypermethylated and 613 hypomethylated promoters were involved in spliceosomal assembly and response to biotic stimuli, and inflammatory immune responses, respectively. At the transcriptome level, T2 vs. T0 showed an upregulation of 337 and downregulation of 61 genes, collectively involved in TNF-α, NFKB, and interleukin signaling. Cell enrichment analysis individuates macrophages, monocytes, and neutrophils as the most significant tissue-cell type in the response. In the process of liver graft procurement-transplantation, IRI induces significant epigenetic changes that primarily act on the signaling pathways of inflammatory responses dependent on TNF-α, NFKB, and interleukins. Our DNAm datasets are the early IRI methylome literature and will serve as a launch point for studying the impact of epigenetic modification in IRI.

Identifiants

pubmed: 38710471
pii: S1665-2681(24)00300-4
doi: 10.1016/j.aohep.2024.101506
pii:
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

101506

Informations de copyright

Copyright © 2024. Published by Elsevier España, S.L.U.

Déclaration de conflit d'intérêts

Conflicts of interest None.

Auteurs

Pablo J Giraudi (PJ)

Metabolic Liver Disease Unit, Fondazione Italiana Fegato, Trieste, Italy. Electronic address: pablo.giraudi@fegato.it.

Allen A Laraño (AA)

Metabolic Liver Disease Unit, Fondazione Italiana Fegato, Trieste, Italy; Research Institute for Tropical Medicine, Department of Health, Muntinlupa City, Philippines.

Simeone Dal Monego (SD)

Area Science Park, Trieste, Italy.

Riccardo Pravisani (R)

Liver-Kidney Transplant Unit, Department of Medicine, University of Udine, Italy.

Deborah Bonazza (D)

Anatomia ed Istologia Patologica, Cattinara Hospital, ASUGI, Trieste, Italy.

Gabriel Gondolesi (G)

Instituto de Medicina Traslacional, Trasplante y Bioingeniería, Universidad Favaloro, Buenos Aires, Argentina.

Claudio Tiribelli (C)

Metabolic Liver Disease Unit, Fondazione Italiana Fegato, Trieste, Italy.

Francisco Baralle (F)

Metabolic Liver Disease Unit, Fondazione Italiana Fegato, Trieste, Italy.

Umberto Baccarani (U)

Liver-Kidney Transplant Unit, Department of Medicine, University of Udine, Italy.

Danilo Licastro (D)

Area Science Park, Trieste, Italy.

Classifications MeSH