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Mechanisms of liver fibrosis and its role in liver cancer

Experimental Biology and Medicine · 2020 · Vol. 245(2) · pp. 96–108
Debanjan DharJacopo BaglieriTatiana KisselevaDavid A. Brenner

Abstract

Hepatic fibrogenesis is a pathophysiological outcome of chronic liver injury hallmarked by excessive accumulation of extracellular matrix proteins. Fibrosis is a dynamic process that involves cross-talk between parenchymal cells (hepatocytes), hepatic stellate cells, sinusoidal endothelial cells and both resident and infiltrating immune cells. In this review, we focus on key cell-types that contribute to liver fibrosis, cytokines, and chemokines influencing this process and what it takes for fibrosis to regress. We discuss how mitochondria and metabolic changes in hepatic stellate cells modulate the fibrogenic process. We also briefly review how the presence of fibrosis affects development of hepatocellular carcinoma. Impact statement Advanced liver fibrosis results in cirrhosis, portal hypertension, and liver failure and often requires liver transplantation. Advanced liver fibrosis and cirrhosis are also major risk factors for hepatocellular carcinoma (HCC). Hepatic stellate cells (HSCs) play a pivotal role in the pathogenesis of liver fibrosis. In this review, we summarize the basic mechanisms that influence liver fibrosis development and how oxidative stress, mitochondrial dysfunction, and metabolic remodeling modulate HSC activation and indicate areas of potential therapeutic intervention.

Liver Disease Diagnosis and TreatmentLiver physiology and pathologyHepatocellular Carcinoma Treatment and PrognosisHepatic stellate cellCirrhosisFibrosisHepatocellular carcinomaHepatic fibrosisMedicineChronic liver diseaseCancer researchPathologyBiology

MeSH terms

AnimalsHumansLiver CirrhosisLiver NeoplasmsMitochondriaOxidative StressChemokinesMyofibroblasts
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