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TGF-β in Hepatic Stellate Cell Activation and Liver Fibrogenesis—Updated 2019

Cells · 2019 · Vol. 8(11) · pp. 1419–1419
Bedair DewidarChristoph MeyerSteven Dooleyand Nadja Meindl-Beinker

Abstract

Liver fibrosis is an advanced liver disease condition, which could progress to cirrhosis and hepatocellular carcinoma. To date, there is no direct approved antifibrotic therapy, and current treatment is mainly the removal of the causative factor. Transforming growth factor (TGF)-β is a master profibrogenic cytokine and a promising target to treat fibrosis. However, TGF-β has broad biological functions and its inhibition induces non-desirable side effects, which override therapeutic benefits. Therefore, understanding the pleiotropic effects of TGF-β and its upstream and downstream regulatory mechanisms will help to design better TGF-β based therapeutics. Here, we summarize recent discoveries and milestones on the TGF-β signaling pathway related to liver fibrosis and hepatic stellate cell (HSC) activation, emphasizing research of the last five years. This comprises impact of TGF-β on liver fibrogenesis related biological processes, such as senescence, metabolism, reactive oxygen species generation, epigenetics, circadian rhythm, epithelial mesenchymal transition, and endothelial-mesenchymal transition. We also describe the influence of the microenvironment on the response of HSC to TGF-β. Finally, we discuss new approaches to target the TGF-β pathway, name current clinical trials, and explain promises and drawbacks that deserve to be adequately addressed.

Liver physiology and pathologyLiver Disease Diagnosis and TreatmentGenetic and Kidney Cyst DiseasesHepatic stellate cellCirrhosisTransforming growth factorCancer researchEpithelial–mesenchymal transitionMesenchymal stem cellTransforming growth factor betaLiver diseaseBiologyHepatic fibrosis

MeSH terms

AnimalsAutophagyCircadian RhythmDisease SusceptibilityEnergy MetabolismGene Expression RegulationHumansLiver CirrhosisSignal TransductionBiomarkersTransforming Growth Factor betaCellular SenescenceOxidative StressEpigenesis, GeneticHepatic Stellate Cells
Citations
752
FWCI
42.24
field-weighted impact
References
287
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100%
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References
Cellular senescence: from physiology to pathology
Nature Reviews Molecular Cell Biology · 2014 · 2,712 citations
TGF-β in progression of liver disease
Cell and Tissue Research · 2011 · 705 citations
Non-Smad TGF-β signals
Journal of Cell Science · 2005 · 1,071 citations
An operational definition of epigenetics: Figure 1.
Genes & Development · 2009 · 1,826 citations
Molecular components of the mammalian circadian clock
Human Molecular Genetics · 2006 · 1,648 citations
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