4.7 Review

Molecular and cellular mechanisms of liver fibrosis and its regression

Journal

NATURE REVIEWS GASTROENTEROLOGY & HEPATOLOGY
Volume 18, Issue 3, Pages 151-166

Publisher

NATURE RESEARCH
DOI: 10.1038/s41575-020-00372-7

Keywords

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Funding

  1. NIH [AA011999, DK101737, AA022614, DK099205, DK111866, AA018663]

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Chronic liver injury results in liver inflammation and fibrosis, which can be reversed by eliminating activated myofibroblasts and resorbing the fibrous scar. Understanding the molecular mechanisms underlying liver fibrosis and its reversibility can lead to the identification of new therapeutic targets for liver fibrosis treatment.
Chronic liver injury leads to liver inflammation and fibrosis, through which activated myofibroblasts in the liver secrete extracellular matrix proteins that generate the fibrous scar. The primary source of these myofibroblasts are the resident hepatic stellate cells. Clinical and experimental liver fibrosis regresses when the causative agent is removed, which is associated with the elimination of these activated myofibroblasts and resorption of the fibrous scar. Understanding the mechanisms of liver fibrosis regression could identify new therapeutic targets to treat liver fibrosis. This Review summarizes studies of the molecular mechanisms underlying the reversibility of liver fibrosis, including apoptosis and the inactivation of hepatic stellate cells, the crosstalk between the liver and the systems that orchestrate the recruitment of bone marrow-derived macrophages (and other inflammatory cells) driving fibrosis resolution, and the interactions between various cell types that lead to the intracellular signalling that induces fibrosis or its regression. We also discuss strategies to target hepatic myofibroblasts (for example, via apoptosis or inactivation) and the myeloid cells that degrade the matrix (for example, via their recruitment to fibrotic liver) to facilitate fibrosis resolution and liver regeneration. Chronic liver injury leads to liver inflammation and fibrosis, through which activated myofibroblasts in the liver secrete extracellular matrix proteins that generate the fibrous scar. This Review summarizes studies of the molecular mechanisms underlying liver fibrosis and its reversibility.

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