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A Simple and Efficient Method to Isolate Macrophages from Mixed Primary Cultures of Adult Liver Cells
Published on: May 24, 2011
Targeting hepatic macrophages to treat liver diseases
1Department of Medicine III, University Hospital Aachen, Aachen, Germany.
Abstract:
Our view on liver macrophages in the context of health and disease has been reformed by the recognition of a remarkable heterogeneity of phagocytes in the liver. Liver macrophages consist of ontogenically distinct populations termed Kupffer cells and monocyte-derived macrophages. Kupffer cells are self-renewing, resident and principally non-migratory phagocytes, serving as sentinels for liver homeostasis. Liver injury triggers Kupffer cell activation, leading to inflammatory cytokine and chemokine release. This fosters the infiltration of monocytes into the liver, which give rise to large numbers of inflammatory monocyte-derived macrophages. Liver macrophages are very plastic and adapt their phenotype according to signals derived from the hepatic microenvironment (e.g. danger signals, fatty acids, phagocytosis of cellular debris), which explains their manifold and even opposing functions during disease. These central functions include the perpetuation of inflammation and hepatocyte injury, activation of hepatic stellate cells with subsequent fibrogenesis, and support of tumor development by angiogenesis and T cell suppression. If liver injury ceases, specific molecular signals trigger hepatic macrophages to switch their phenotype towards reparative phagocytes that promote tissue repair and regression of fibrosis. Novel strategies to treat liver disease aim at targeting macrophages. These interventions modulate Kupffer cell activation (e.g. via gut-liver axis or inflammasome formation), monocyte recruitment (e.g. via inhibiting chemokine pathways like CCR2 or CCL2) or macrophage polarization and differentiation (e.g. by nanoparticles). Evidence from mouse models and early clinical studies in patients with non-alcoholic steatohepatitis and fibrosis support the notion that pathogenic macrophage subsets can be successfully translated into novel treatment options for patients with liver disease.
Lay Summary:
Macrophages (Greek for "big eaters") are a frequent non-parenchymal cell type of the liver that ensures homeostasis, antimicrobial defense and proper metabolism. However, liver macrophages consist of different subtypes regarding their ontogeny (developmental origin), differentiation and function. Understanding this heterogeneity and the critical regulation of inflammation, fibrosis and cancer by macrophage subsets opens promising new options for treating liver diseases.
Insights
Liver macrophages exhibit diverse subtypes, influencing liver health and disease. Targeting these distinct macrophage populations offers promising new therapeutic strategies for liver conditions.
Area of Science:
- Hepatology and immunology
- Cell biology
- Molecular medicine
Background:
- Liver macrophages, including Kupffer cells and monocyte-derived macrophages, are crucial for liver homeostasis and defense.
- These macrophages display significant heterogeneity in origin, differentiation, and function.
- Their plasticity allows adaptation to the hepatic microenvironment, leading to diverse roles in liver injury, fibrosis, and cancer.
Purpose of the Study:
- To elucidate the heterogeneity of liver macrophages and their roles in liver health and disease.
- To explore how understanding macrophage plasticity can lead to novel therapeutic strategies for liver diseases.
- To review current and emerging therapeutic interventions targeting liver macrophages.
Main Methods:
- Review of existing literature on liver macrophage biology and heterogeneity.
- Analysis of molecular signals regulating macrophage phenotype and function in the liver.
- Examination of evidence from mouse models and clinical studies on macrophage-targeted therapies.
Main Results:
- Liver macrophages comprise distinct ontogenic populations (Kupffer cells and monocyte-derived macrophages) with specialized functions.
- Macrophage phenotype is plastic, adapting to microenvironmental cues, mediating both inflammatory and reparative processes.
- Targeting macrophage activation, recruitment, and polarization shows potential for treating liver diseases like non-alcoholic steatohepatitis and fibrosis.
Conclusions:
- The heterogeneity and plasticity of liver macrophages are central to their multifaceted roles in liver homeostasis and pathology.
- Modulating specific macrophage subsets presents a promising avenue for developing novel treatments for a range of liver diseases.
- Targeting liver macrophages holds potential for therapeutic interventions in conditions including inflammation, fibrosis, and cancer.

