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Updated: Apr 11, 2026

Isolation, Characterization, and Purification of Macrophages from Tissues Affected by Obesity-related Inflammation
Published on: April 3, 2017
Macrophage autophagy protects against liver fibrosis in mice
Jasper Lodder1, Timothé Denaës, Marie-Noële Chobert
1a INSERM U955; Institut Mondor de Recherche Biomédicale ; Créteil ; France.
Abstract:
Autophagy is a lysosomal degradation pathway of cellular components that displays antiinflammatory properties in macrophages. Macrophages are critically involved in chronic liver injury by releasing mediators that promote hepatocyte apoptosis, contribute to inflammatory cell recruitment and activation of hepatic fibrogenic cells. Here, we investigated whether macrophage autophagy may protect against chronic liver injury. Experiments were performed in mice with mutations in the autophagy gene Atg5 in the myeloid lineage (Atg5(fl/fl) LysM-Cre mice, referred to as atg5(-/-)) and their wild-type (Atg5(fl/fl), referred to as WT) littermates. Liver fibrosis was induced by repeated intraperitoneal injection of carbon tetrachloride. In vitro studies were performed in cultures or co-cultures of peritoneal macrophages with hepatic myofibroblasts. As compared to WT littermates, atg5(-/-) mice exposed to chronic carbon tetrachloride administration displayed higher hepatic levels of IL1A and IL1B and enhanced inflammatory cell recruitment associated with exacerbated liver injury. In addition, atg5(-/-) mice were more susceptible to liver fibrosis, as shown by enhanced matrix and fibrogenic cell accumulation. Macrophages from atg5(-/-) mice secreted higher levels of reactive oxygen species (ROS)-induced IL1A and IL1B. Moreover, hepatic myofibroblasts exposed to the conditioned medium of macrophages from atg5(-/-) mice showed increased profibrogenic gene expression; this effect was blunted when neutralizing IL1A and IL1B in the conditioned medium of atg5(-/-) macrophages. Finally, administration of recombinant IL1RN (interleukin 1 receptor antagonist) to carbon tetrachloride-exposed atg5(-/-) mice blunted liver injury and fibrosis, identifying IL1A/B as central mediators in the deleterious effects of macrophage autophagy invalidation. These results uncover macrophage autophagy as a novel antiinflammatory pathway regulating liver fibrosis.
Insights
Macrophage autophagy protects against chronic liver injury and fibrosis by reducing inflammation. Impaired autophagy in macrophages worsens liver damage and promotes fibrosis through increased IL1A/B secretion.
Area of Science:
- Cell Biology
- Immunology
- Hepatology
Background:
- Macrophages play a key role in chronic liver injury and fibrosis.
- Autophagy is a cellular degradation process with known anti-inflammatory properties.
Purpose of the Study:
- To investigate the role of macrophage autophagy in protecting against chronic liver injury and fibrosis.
Main Methods:
- Experiments utilized mice with myeloid-specific Atg5 gene deletion (atg5(-/-)) and wild-type (WT) littermates.
- Liver fibrosis was induced using carbon tetrachloride administration.
- In vitro studies involved macrophage and hepatic myofibroblast co-cultures.
Main Results:
- Atg5(-/-) mice exhibited exacerbated liver injury, increased inflammation (IL1A, IL1B), and heightened susceptibility to fibrosis compared to WT mice.
- Macrophages lacking Atg5 secreted higher levels of IL1A and IL1B, promoting profibrogenic gene expression in myofibroblasts.
- Interleukin-1 receptor antagonist (IL1RN) administration ameliorated liver injury and fibrosis in atg5(-/-) mice.
Conclusions:
- Macrophage autophagy acts as a crucial anti-inflammatory pathway that mitigates liver fibrosis.
- Dysfunctional macrophage autophagy exacerbates liver injury and fibrosis, mediated by IL1A/B signaling.
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