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Updated: Nov 11, 2025

Isolation, Characterization, and Purification of Macrophages from Tissues Affected by Obesity-related Inflammation
Published on: April 3, 2017
Aldose reductase deficiency inhibits LPS-induced M1 response in macrophages by activating autophagy
Peng Cheng1,2, Jianwei Xie3, Zhiyong Liu3
1Department of Neurology, Second Naval Hospital of Southern Theater Command (425th Hospital of the People's Liberation Army), Sanya, 572000, China. chengpengfmmu@126.com.
Abstract:
Macrophage M1 polarization mediates inflammatory responses and tissue damage. Recently, aldose reductase (AR) has been shown to play a critical role in M1 polarization in macrophages. However, the underlying mechanisms are unknown. Here, we demonstrated, for the first time, that AR deficiency repressed the induction of inducible nitric oxide synthase in lipopolysaccharide (LPS)-stimulated macrophages via activation of autophagy. This suppression was related to a defect in the inhibitor of nuclear factor κB (NF-κB) kinase (IKK) complex in the classical NF-κB pathway. However, the mRNA levels of IKKβ and IKKγ were not reduced in LPS-treated AR knockout (KO) macrophages, indicating that their proteins were downregulated at the post-transcriptional level. We discovered that LPS stimuli induced the recruitment of more beclin1 and increased autophagosome formation in AR-deficient macrophages. Blocking autophagy through 3-methyladenine and ammonium chloride treatment restored IKKβ and IKKγ protein levels and increased nitric oxide synthase production in LPS-stimulated AR-deficient macrophages. More assembled IKKβ and IKKγ underwent ubiquitination and recruited the autophagic adaptor p62 in LPS-induced AR KO macrophages, promoting their delivery to autophagosomes and lysosomes. Collectively, these findings suggest that AR deficiency is involved in the regulation of NF-κB signaling, and extends the role of selective autophagy in fine-tuned M1 macrophage polarization.
Insights
Aldose reductase (AR) deficiency suppresses M1 macrophage polarization by activating autophagy, which degrades the NF-κB signaling complex. This reveals a novel mechanism regulating inflammatory responses.
Area of Science:
- Immunology
- Cell Biology
Background:
- Macrophage M1 polarization drives inflammation and tissue damage.
- Aldose reductase (AR) is implicated in M1 polarization, but mechanisms remain unclear.
Purpose of the Study:
- To elucidate the role of aldose reductase (AR) in regulating M1 macrophage polarization.
- To investigate the molecular mechanisms by which AR deficiency impacts inflammatory signaling.
Main Methods:
- Utilized lipopolysaccharide (LPS)-stimulated macrophages from AR knockout (KO) mice.
- Investigated the NF-κB pathway, autophagy markers (beclin1, p62), and protein degradation.
- Employed autophagy inhibitors (3-methyladenine, ammonium chloride) to assess functional impact.
Main Results:
- AR deficiency repressed inducible nitric oxide synthase (iNOS) induction in LPS-stimulated macrophages.
- AR deficiency activated autophagy, leading to post-transcriptional downregulation of IKKβ and IKKγ via ubiquitination and autophagic degradation.
- Blocking autophagy restored IKK protein levels and iNOS production in AR-deficient macrophages.
Conclusions:
- AR deficiency regulates M1 macrophage polarization through autophagy-mediated degradation of NF-κB signaling components.
- Selective autophagy plays a critical role in fine-tuning M1 macrophage polarization.
- Findings highlight AR as a potential therapeutic target for inflammatory diseases.
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