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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
Novel phenotypical and functional sub-classification of liver macrophages highlights changes in population dynamics
Hiroyuki Nakashima1, Bradley M Kearney1, Azusa Kato1
1Department of Immunology and Microbiology, National Defense Medical College, Saitama, Japan.
Abstract:
Liver macrophages are critical components of systemic immune system defense mechanisms. F4/80high Kupffer cells (KCs) are the predominant liver-resident macrophages and the first immune cells to contact pathogens entering the liver. F4/80low monocyte-derived macrophages (MoMφs) are essential macrophages that modulate liver immune functions. Here we report a novel method of identifying subpopulations of these two populations using traditional flow cytometry and examine each subpopulation for its putative roles in the pathogenesis of an experimental non-alcoholic steatohepatitis model. Using male C57BL/6 mice, we isolated and analyzed liver non-parenchymal cells by flow cytometry. We identified F4/80high and F4/80low macrophage populations and characterized subpopulations using uniform manifold approximation and projection. We identified three subpopulations in F4/80high macrophages: CD163(+) KCs, CD163(-) KCs, and liver capsular macrophages. CD163(+) KCs had higher phagocytic and bactericidal activities and more complex cellular structures than CD163(-) KCs. We also identified four subpopulations of F4/80low MoMφs based on Ly6C and MHC class II expression: infiltrating monocytes, pro-inflammatory MoMφs, Ly6C(-) monocytes, and conventional dendritic cells. CCR2 knock-out mice expressed lower levels of these monocyte-derived cells, and the count varied by subpopulation. In high-fat- and cholesterol-diet-fed mice, only one subpopulation, pro-inflammatory MoMφs, significantly increased in count. This indicates that changes to this subpopulation is the first step in the progression to non-alcoholic steatohepatitis. The community can use our novel subpopulation and gating strategy to better understand complex immunological mechanisms in various liver disorders through detailed analysis of these subpopulations.
Insights
Researchers developed a new flow cytometry method to identify liver macrophage subpopulations. Pro-inflammatory monocyte-derived macrophages (MoMφs) increase in non-alcoholic steatohepatitis, indicating their role in disease progression.
Area of Science:
- Immunology
- Cell Biology
- Hepatology
Background:
- Liver macrophages, including Kupffer cells (KCs) and monocyte-derived macrophages (MoMφs), are crucial for liver immunity.
- Distinct subpopulations of these macrophages may play varied roles in liver disease pathogenesis.
- Non-alcoholic steatohepatitis (NASH) involves complex immune dysregulation within the liver.
Purpose of the Study:
- To develop a novel flow cytometry method for identifying liver macrophage subpopulations.
- To characterize the distinct subpopulations of F4/80high Kupffer cells and F4/80low monocyte-derived macrophages.
- To investigate the role of these subpopulations in an experimental model of non-alcoholic steatohepatitis.
Main Methods:
- Isolation and analysis of liver non-parenchymal cells from C57BL/6 mice using flow cytometry.
- Characterization of macrophage subpopulations using uniform manifold approximation and projection (UMAP).
- Assessment of subpopulation changes in CCR2 knockout mice and mice fed a high-fat/cholesterol diet.
Main Results:
- Identified three F4/80high KC subpopulations (CD163(+) KCs, CD163(-) KCs, liver capsular macrophages), with CD163(+) KCs showing higher phagocytic and bactericidal activity.
- Identified four F4/80low MoMφ subpopulations (infiltrating monocytes, pro-inflammatory MoMφs, Ly6C(-) monocytes, conventional dendritic cells).
- Observed a significant increase in pro-inflammatory MoMφs in mice with diet-induced NASH, suggesting their critical role in disease progression.
Conclusions:
- A novel flow cytometry gating strategy enables detailed analysis of liver macrophage subpopulations.
- Pro-inflammatory MoMφs are a key cellular component that expands during NASH development.
- This methodology can advance the understanding of immune mechanisms in various liver disorders.

