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Updated: Jan 17, 2026

Kupffer Cell Isolation for Nanoparticle Toxicity Testing
Published on: August 18, 2015
Infiltrating macrophages replace Kupffer cells and play diverse roles in severe alcohol-associated hepatitis
Yang Wang1, Yukun Guan1, Dechun Feng1
1Laboratory of Liver Diseases, National Institute on Alcohol Abuse and Alcoholism, NIH, Bethesda, MD, USA.
Abstract:
Patients with alcohol-associated cirrhosis (AC) may develop severe alcohol-associated hepatitis (sAH), a disease with high short-term mortality. Our previous studies demonstrated that sAH, but not AC livers, are infiltrated with a high number of self-sustaining IL-8+ neutrophils that likely drive the transition from AC to sAH. Monocyte-derived macrophages (MoMFs) also infiltrate the liver in sAH, but their roles remain largely obscure. In the present study, we characterized liver macrophages in human liver explants from sAH and AC patients. Our data revealed a marked reduction in Kupffer cells, whereas MoMFs were increased in sAH and AC. Single-cell RNA-Seq analyses revealed several populations in both AC and sAH, including C1Q+, S100A8+, APOE+, TNF+ and VSIG4+ macrophages, with sAH containing unique C1Q+ macrophages potentially playing a role in removing apoptotic neutrophils in sAH. C1Q+ macrophages also express many genes involved in phagocytosis and proinflammatory and anti-inflammatory functions, suggesting that C1Q+ macrophages have diverse functions in sAH. The roles of C1Q, S100A8, and APOE were further examined in experimental models of alcohol-induced liver injury. Our data revealed that C1q KO mice and macrophage-specific S100a8 KO mice presented similar alcohol-induced liver injury and hepatic neutrophil infiltration, while Apoe KO mice developed much more severe liver injury than did WT mice following chronic-plus-binge ethanol challenge. Taken together, sAH and AC are infiltrated with multiple populations of macrophages that perform diverse functions to drive chronic disease progression. Unique C1Q+ macrophages in sAH play a compensatory role in removing dead cells but may also promote inflammation in sAH.
Insights
Severe alcohol-associated hepatitis (sAH) involves unique C1Q+ macrophages that clear dead neutrophils but may also drive inflammation. Understanding these macrophage roles is crucial for treating alcohol-related liver disease.
Area of Science:
- Hepatology
- Immunology
- Cell Biology
Background:
- Alcohol-associated cirrhosis (AC) can progress to severe alcohol-associated hepatitis (sAH), a condition with high mortality.
- While neutrophils are implicated in sAH pathogenesis, the role of liver macrophages remains unclear.
- Monocyte-derived macrophages (MoMFs) increase in sAH, but their specific functions are largely unknown.
Purpose of the Study:
- To characterize liver macrophage populations in human explants from AC and sAH patients.
- To investigate the functional roles of specific macrophage subsets, including C1Q+, S100A8+, and APOE+, in alcohol-induced liver injury.
Main Methods:
- Analysis of human liver explants from AC and sAH patients.
- Single-cell RNA sequencing (scRNA-Seq) to identify macrophage populations.
- Experimental models using knockout mice (C1q KO, S100a8 KO, Apoe KO) to study alcohol-induced liver injury.
Main Results:
- sAH and AC livers show reduced Kupffer cells and increased MoMFs.
- scRNA-Seq identified diverse macrophage populations, including unique C1Q+ macrophages in sAH.
- C1Q+ macrophages in sAH express genes for phagocytosis and inflammation, suggesting dual roles.
- Apoe knockout mice exhibited exacerbated alcohol-induced liver injury, while C1q and S100a8 knockouts showed similar injury to wild-type mice.
Conclusions:
- sAH and AC feature distinct macrophage populations with varied functions contributing to disease progression.
- Unique C1Q+ macrophages in sAH may compensate for dead cell clearance but also promote inflammation.
- Macrophage populations, particularly APOE, play a significant role in the severity of alcohol-induced liver injury.
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