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Updated: Dec 28, 2025

Functional Characterization of Regulatory Macrophages That Inhibit Graft-reactive Immunity
Published on: June 7, 2017
Liver fibrosis and CD206+ macrophage accumulation are suppressed by anti-GM-CSF therapy
Alfonso Tan-Garcia1, Fritz Lai2, Joe Poh Sheng Yeong3
1Program in Emerging Infectious Diseases, Duke-NUS Medical School, 8 College Road, Singapore 169857, Singapore.
Background & Aims:
Chronic liver inflammation leads to fibrosis and cirrhosis and is associated with an accumulation of intrahepatic TNFα-secreting CD206+ macrophages, which may participate in maintaining chronic liver disease in a GM-CSF-dependent manner. We aimed to elucidate the exact role of GM-CSF in the development and progression of chronic liver disease.
Methods:
Liver immunohistochemistry and serum quantification were performed in patients with viral and non-viral-related liver disease to compare CD206+ monocyte/macrophages, fibrosis and GM-CSF. This was followed by functional validations in vitro and in vivo in humanised mice.
Results:
Using multiplex immunofluorescence and histo-cytometry, we show that highly fibrotic livers had a greater density of CD206+ macrophages that produced more TNFα and GM-CSF in the non-tumour liver regions of patients with hepatocellular carcinoma (n = 47), independent of aetiology. In addition, the absolute number of CD206+ macrophages strongly correlated with the absolute number of GM-CSF-producing macrophages. In non-HCC chronic HCV+ patients (n = 40), circulating GM-CSF levels were also increased in proportion to the degree of liver fibrosis and serum viral titres. We then demonstrated in vitro that monocytes converted to TNFα-producing CD206+ macrophage-like cells in response to bacterial products (lipopolysaccharide) in a GM-CSF-dependent manner, confirming the in vivo normalisation of serum GM-CSF concentration following oral antibiotic treatment observed in HBV-infected humanised mice. Finally, anti-GM-CSF neutralising antibody treatment reduced intrahepatic CD206+ macrophage accumulation and abolished liver fibrosis in HBV-infected humanised mice.
Conclusions:
While the direct involvement of CD206+ macrophages in liver fibrosis remains to be demonstrated, these findings show that GM-CSF may play a central role in liver fibrosis and could guide the development of anti-GM-CSF antibody-based therapy for the management of patients with chronic liver disease.
Lay Summary:
Liver fibrosis is a major driver of liver disease progression. Herein, we have shown that granulocyte-macrophage colony-stimulating factor (GM-CSF) plays an important role in the development of liver fibrosis. Our findings support the use of anti-GM-CSF neutralising antibodies for the management of patients with chronic liver disease resulting from both viral and non-viral causes.
Insights
Granulocyte-macrophage colony-stimulating factor (GM-CSF) drives liver fibrosis by promoting TNFα-secreting CD206+ macrophages. Targeting GM-CSF with neutralising antibodies may offer a novel therapy for chronic liver disease.
Area of Science:
- Immunology
- Hepatology
- Inflammation
Background:
- Chronic liver inflammation can lead to fibrosis and cirrhosis.
- Intrahepatic TNFα-secreting CD206+ macrophages accumulate and may drive disease progression.
- Granulocyte-macrophage colony-stimulating factor (GM-CSF) is implicated in this process.
Purpose of the Study:
- To elucidate the role of GM-CSF in the development and progression of chronic liver disease.
- To investigate the link between GM-CSF, CD206+ macrophages, and liver fibrosis.
- To evaluate anti-GM-CSF antibody therapy in a preclinical model.
Main Methods:
- Analysis of liver tissue and serum from patients with viral and non-viral liver disease.
- Multiplex immunofluorescence and histo-cytometry to quantify macrophages and cytokines.
- In vitro studies with human monocytes and in vivo studies using HBV-infected humanised mice.
Main Results:
- Highly fibrotic livers showed increased density of TNFα and GM-CSF producing CD206+ macrophages.
- Circulating GM-CSF levels correlated with liver fibrosis and viral load in HCV patients.
- Anti-GM-CSF antibody treatment reduced macrophage accumulation and liver fibrosis in mice.
Conclusions:
- GM-CSF plays a central role in liver fibrosis development.
- Targeting GM-CSF may be a viable therapeutic strategy for chronic liver disease.
- Further research is needed to confirm the direct role of CD206+ macrophages in fibrosis.

