Understanding the cellular interactome of non-alcoholic fatty liver disease

  • Sebastian J. Wallace
  • , Frank Tacke
  • , Robert F. Schwabe
  • , Neil C. Henderson

Research output: Contribution to journalReview articlepeer-review

94 Scopus citations

Abstract

Non-alcoholic fatty liver disease (NAFLD) is reaching epidemic proportions, with a global prevalence of 25% in the adult population. Non-alcoholic steatohepatitis (NASH), which can lead to cirrhosis, has become the leading indication for liver transplantation in both Europe and the USA. Liver fibrosis is the consequence of sustained, iterative liver injury, and the main determinant of outcomes in NASH. The liver possesses remarkable inherent plasticity, and liver fibrosis can regress when the injurious agent is removed, thus providing opportunities to alter long-term outcomes through therapeutic interventions. Although hepatocyte injury is a key driver of NASH, multiple other cell lineages within the hepatic fibrotic niche play major roles in the perpetuation of inflammation, mesenchymal cell activation, extracellular matrix accumulation as well as fibrosis resolution. The constituents of this cellular interactome, and how the various subpopulations within the fibrotic niche interact to drive fibrogenesis is an area of active research. Important cellular components of the fibrotic niche include endothelial cells, macrophages, passaging immune cell populations and myofibroblasts. In this review, we will describe how rapidly evolving technologies such as single-cell genomics, spatial transcriptomics and single-cell ligand-receptor analyses are transforming our understanding of the cellular interactome in NAFLD/NASH, and how this new, high-resolution information is being leveraged to develop rational new therapies for patients with NASH.

Original languageEnglish
Article number100524
JournalJHEP Reports
Volume4
Issue number8
DOIs
StatePublished - Aug 2022
Externally publishedYes

Keywords

  • Non-alcoholic fatty liver disease (NAFLD)
  • antifibrotic therapies
  • cellular interactome
  • cirrhosis
  • fibrosis
  • single-cell genomics

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