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Updated: May 22, 2025

Depletion and Reconstitution of Macrophages in Mice
Published on: August 1, 2012
Neutrophil-modulated Dicer expression in macrophages influences inflammation resolution
Zhishang Wang1, Wenhua Li2, Jia Li3
1Department of Cardiovascular Surgery, General Hospital of Northern Theater Command, No.83, Wenhua Road, Shenhe District, Shenyang, Liaoning, 110016, China.
Abstract:
The precise molecular mechanisms through which neutrophils regulate macrophages in the progression and resolution of acute inflammation remain poorly understood. Here, we present new findings on the role of Dicer in regulating macrophage phenotypic transitions essential for proper inflammatory progression and resolution, influenced by neutrophils. Using a zymosan A (Zym A)-induced self-limited mouse peritonitis model, we observed that Dicer expression in macrophages was significantly reduced by neutrophil-derived IFN-γ during the progression phase, but gradually returned to normal levels during the resolution phase following the engulfment of apoptotic neutrophils. Our study on macrophage-specific Dicer1-depletion (Dicer1-CKO) mice demonstrated that inflammation in these mice was more severe during the progression phase, characterized by increased pro-inflammatory cytokines and enhanced neutrophil trafficking. Additionally, resolution was impaired in Dicer1-CKO mice, leading to the accumulation of uncleared apoptotic neutrophils. Specifically, the absence of Dicer in macrophages resulted in M1 polarization and heightened bactericidal activity, facilitating the progression of acute inflammation. Conversely, inducing Dicer expression promoted macrophage transition to M2 polarization, enhancing apoptotic cell clearance and expediting the resolution of inflammation. Our findings suggest that Dicer plays a central role in regulating the progression and resolution of acute inflammation, with implications for the treatment of inflammatory diseases.
Insights
Dicer regulates macrophage transitions crucial for resolving acute inflammation. Neutrophil-derived IFN-γ reduces Dicer during inflammation, while its restoration aids resolution by promoting M2 macrophage polarization and apoptotic cell clearance.
Area of Science:
- Immunology
- Molecular Biology
Background:
- The roles of neutrophils in regulating macrophage function during acute inflammation are not fully understood.
- Macrophage phenotypic plasticity is critical for both the progression and resolution of inflammatory responses.
Purpose of the Study:
- To investigate the role of Dicer in macrophage phenotypic transitions during acute inflammation.
- To elucidate the mechanisms by which neutrophils influence Dicer expression in macrophages.
Main Methods:
- Zymosan A-induced peritonitis model in mice.
- Analysis of Dicer expression in macrophages during inflammation.
- Assessment of inflammatory progression and resolution in macrophage-specific Dicer1-depletion (Dicer1-CKO) mice.
Main Results:
- Neutrophil-derived IFN-γ reduced macrophage Dicer expression during inflammation progression.
- Dicer1-CKO mice exhibited exacerbated inflammation, increased pro-inflammatory cytokines, and impaired resolution.
- Absence of Dicer promoted M1 macrophage polarization and heightened bactericidal activity.
- Dicer induction facilitated M2 polarization, enhanced apoptotic neutrophil clearance, and promoted inflammation resolution.
Conclusions:
- Dicer is a key regulator of macrophage polarization and function in acute inflammation.
- Dicer-mediated macrophage transitions are essential for effective resolution of inflammation.
- Targeting Dicer may offer therapeutic strategies for inflammatory diseases.
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