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Published on: April 3, 2017
MerTK expressing hepatic macrophages promote the resolution of inflammation in acute liver failure
Evangelos Triantafyllou1,2,3, Oltin T Pop1, Lucia A Possamai2
1Institute of Liver Studies, King's College Hospital, King's College London, London, UK.
Objective:
Acute liver failure (ALF) is characterised by overwhelming hepatocyte death and liver inflammation with massive infiltration of myeloid cells in necrotic areas. The mechanisms underlying resolution of acute hepatic inflammation are largely unknown. Here, we aimed to investigate the impact of Mer tyrosine kinase (MerTK) during ALF and also examine how the microenvironmental mediator, secretory leucocyte protease inhibitor (SLPI), governs this response.
Design:
Flow cytometry, immunohistochemistry, confocal imaging and gene expression analyses determined the phenotype, functional/transcriptomic profile and tissue topography of MerTK+ monocytes/macrophages in ALF, healthy and disease controls. The temporal evolution of macrophage MerTK expression and its impact on resolution was examined in APAP-induced acute liver injury using wild-type (WT) and Mer-deficient (Mer-/-) mice. SLPI effects on hepatic myeloid cells were determined in vitro and in vivo using APAP-treated WT mice.
Results:
We demonstrate a significant expansion of resolution-like MerTK+HLA-DRhigh cells in circulatory and tissue compartments of patients with ALF. Compared with WT mice which show an increase of MerTK+MHCIIhigh macrophages during the resolution phase in ALF, APAP-treated Mer-/- mice exhibit persistent liver injury and inflammation, characterised by a decreased proportion of resident Kupffer cells and increased number of neutrophils. Both in vitro and in APAP-treated mice, SLPI reprogrammes myeloid cells towards resolution responses through induction of a MerTK+HLA-DRhigh phenotype which promotes neutrophil apoptosis and their subsequent clearance.
Conclusions:
We identify a hepatoprotective, MerTK+, macrophage phenotype that evolves during the resolution phase following ALF and represents a novel immunotherapeutic target to promote resolution responses following acute liver injury.
Insights
Secretory leucocyte protease inhibitor (SLPI) promotes resolution of acute liver failure (ALF) by reprogramming myeloid cells. This creates a Mer tyrosine kinase (MerTK)-positive macrophage phenotype that aids in clearing inflammatory neutrophils.
Area of Science:
- Immunology
- Hepatology
- Cell Biology
Background:
- Acute liver failure (ALF) involves significant hepatocyte death and inflammation, with myeloid cell infiltration.
- Mechanisms driving the resolution of acute hepatic inflammation remain poorly understood.
- Mer tyrosine kinase (MerTK) and secretory leucocyte protease inhibitor (SLPI) are investigated for their roles in ALF resolution.
Purpose of the Study:
- To investigate the impact of Mer tyrosine kinase (MerTK) in ALF.
- To examine how SLPI influences the MerTK-mediated response in ALF.
- To identify novel therapeutic targets for promoting resolution of acute liver injury.
Main Methods:
- Flow cytometry, immunohistochemistry, confocal imaging, and gene expression analyses were used.
- Phenotype, function, and tissue distribution of MerTK+ monocytes/macrophages were assessed.
- Acetaminophen (APAP)-induced acute liver injury in wild-type and Mer-deficient mice was utilized to study MerTK's role and SLPI's effects.
Main Results:
- A significant expansion of MerTK+HLA-DRhigh cells, indicative of resolution, was observed in ALF patients.
- Mer-deficient mice showed persistent liver injury, inflammation, reduced Kupffer cells, and increased neutrophils compared to wild-type mice.
- SLPI reprogrammed myeloid cells towards a MerTK+HLA-DRhigh phenotype, promoting neutrophil apoptosis and clearance in vitro and in vivo.
Conclusions:
- A hepatoprotective MerTK-positive macrophage phenotype emerges during ALF resolution.
- This phenotype represents a potential immunotherapeutic target for acute liver injury.
- SLPI plays a crucial role in orchestrating this resolution response.
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