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Updated: Aug 9, 2025

Investigation of Macrophage Polarization Using Bone Marrow Derived Macrophages
Published on: June 23, 2013
MLKL signaling regulates macrophage polarization in acute pancreatitis through CXCL10
Cheng Peng1, Guangping Tu1, Jiale Wang1
1Department of Hepatopancreatobiliary Surgery, Third Xiangya Hospital, Central South University, Changsha, 410013, Hunan, China.
Abstract:
Acute pancreatitis (AP) is a disease characterized by local and systemic inflammation with an increasing incidence worldwide. Receptor-interacting serine/threonine protein kinase 3 (RIPK3), mixed-lineage kinase domain-like protein (MLKL), and innate immune cell macrophages have been reported to be involved in the pathogenesis of AP. However, the mechanisms by which RIPK3 and MLKL regulate pancreatic injury, as well as the interactions between injured pancreatic acinar cells and infiltrating macrophages in AP, remain poorly defined. In the present study, experimental pancreatitis was induced in C57BL/6J, Ripk3-/- and Mlkl-/- mice by cerulein plus lipopolysaccharide in vivo, and primary pancreatic acinar cells were also isolated to uncover cellular mechanisms during cerulein stimulation in vitro. The results showed that MLKL and its phosphorylated protein p-MLKL were upregulated in the pancreas of the mouse AP model and cerulein-treated pancreatic acinar cells, independent of its canonical upstream molecule Ripk3, and appeared to function in a cell death-independent manner. Knockout of Mlkl attenuated AP in mice by reducing the polarization of pancreatic macrophages toward the M1 phenotype, and this protective effect was partly achieved by reducing the secretion of CXCL10 from pancreatic acinar cells, whereas knockout of Ripk3 did not. In vitro neutralization of CXCL10 impaired the pro-M1 ability of the conditioned medium of cerulein-treated pancreatic acinar cells, whereas in vivo neutralization of CXCL10 reduced the polarization of pancreatic macrophages toward M1 and the severity of AP in mice. These findings suggested that targeting the MLKL-CXCL10-macrophage axis might be a promising strategy for the treatment of AP.
Insights
Targeting the MLKL-CXCL10-macrophage axis shows promise for treating acute pancreatitis (AP). MLKL, not RIPK3, influences AP severity by affecting macrophage polarization and CXCL10 secretion.
Area of Science:
- Immunology
- Gastroenterology
- Cell Biology
Background:
- Acute pancreatitis (AP) is a prevalent inflammatory disease with poorly understood mechanisms.
- Receptor-interacting serine/threonine protein kinase 3 (RIPK3), mixed-lineage kinase domain-like protein (MLKL), and macrophages are implicated in AP pathogenesis.
- The precise roles of RIPK3 and MLKL in pancreatic injury and acinar cell-macrophage interactions in AP require further elucidation.
Purpose of the Study:
- To investigate the roles of RIPK3 and MLKL in acute pancreatitis.
- To explore the mechanisms by which MLKL influences pancreatic injury and macrophage polarization.
- To identify potential therapeutic targets for AP treatment.
Main Methods:
- Experimental pancreatitis was induced in wild-type, Ripk3 knockout, and Mlkl knockout mice using cerulein plus lipopolysaccharide.
- Primary pancreatic acinar cells were isolated and stimulated with cerulein in vitro.
- Levels of MLKL, p-MLKL, and CXCL10 were assessed, and macrophage polarization was analyzed.
Main Results:
- MLKL and p-MLKL were upregulated in AP models, independent of Ripk3, and functioned in a cell death-independent manner.
- Mlkl knockout attenuated AP severity by reducing M1 macrophage polarization and CXCL10 secretion from acinar cells.
- Ripk3 knockout did not show a protective effect; CXCL10 neutralization reduced M1 polarization and AP severity.
Conclusions:
- MLKL, independent of RIPK3, plays a significant role in AP pathogenesis.
- The MLKL-CXCL10-macrophage axis is a key pathway in AP.
- Targeting the MLKL-CXCL10-macrophage interaction presents a potential therapeutic strategy for acute pancreatitis.
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