Related Experiment Video
Updated: Aug 5, 2026

Investigation of Macrophage Polarization Using Bone Marrow Derived Macrophages
Published on: June 23, 2013
Global Proteomic Analysis Reveals Inflammatory Pathway Modulation Associated with miR-146a in LPS-Stimulated
Marut Tangwattanachuleeporn1,2, Aunyamon Srichaimongkol3,4, Jiradej Makjaroen5
1Faculty of Allied Health Sciences, Burapha University, Chon Buri 20130, Thailand.
Abstract:
Inflammation is essential for host defense, but, when dysregulated, it contributes to tissue damage and chronic disease. MicroRNA-146a (miR-146a) is a well-recognized negative regulator of inflammatory signaling, primarily through suppression of the NF-κB pathway; however, its broader proteomic impact under inflammatory conditions remains incompletely defined. In this study, we overexpressed an miR-146a mimic in lipopolysaccharide (LPS)-stimulated RAW 264.7 macrophages and applied quantitative mass spectrometry to characterize global protein abundance changes. Functional overexpression was supported by reduced mRNA abundance of the established miR-146a targets TRAF6 and IRAK1 under LPS-stimulated conditions. Proteomic analysis identified 1232 proteins showing differential abundance under the predefined exploratory criteria, including proteins related to NF-κB activity, inflammasome components, nitric oxide synthesis, and IL-6-associated pathways. Proteins linked to interferon-related signaling were also altered. Targeted validation by quantitative RT-PCR and parallel reaction monitoring supported changes in selected inflammatory mediators, including PTGS2, NOS2, MAPKAPK2, and IRF3. Functionally, miR-146a overexpression was associated with reduced LPS-induced nitric oxide and IL-6 production. Together, these findings provide an exploratory proteomic overview of pathways associated with miR-146a overexpression in activated macrophages and suggest that miR-146a is associated with modulation of multiple inflammatory signaling networks under inflammatory conditions.
Insights
MicroRNA-146a (miR-146a) overexpression in macrophages reduces inflammatory responses. This study reveals miR-146a modulates multiple inflammatory signaling networks, impacting pathways like NF-κB and IL-6.
Area of Science:
- Immunology
- Molecular Biology
- Proteomics
Background:
- Dysregulated inflammation drives tissue damage and chronic disease.
- MicroRNA-146a (miR-146a) is a known negative regulator of inflammatory signaling, primarily via the NF-κB pathway.
- The full proteomic impact of miR-146a in inflammation is not well understood.
Purpose of the Study:
- To investigate the global proteomic changes associated with miR-146a overexpression in activated macrophages.
- To define the broader impact of miR-146a on inflammatory signaling pathways.
Main Methods:
- Overexpression of an miR-146a mimic in lipopolysaccharide (LPS)-stimulated RAW 264.7 macrophages.
- Quantitative mass spectrometry to analyze global protein abundance.
- Validation of key target and mediator changes using RT-PCR and parallel reaction monitoring.
Main Results:
- Proteomic analysis identified 1232 differentially abundant proteins.
- Affected pathways included NF-κB activity, inflammasome components, nitric oxide synthesis, IL-6, and interferon signaling.
- miR-146a overexpression reduced LPS-induced nitric oxide and IL-6 production.
Conclusions:
- miR-146a overexpression impacts multiple inflammatory signaling networks in activated macrophages.
- These findings provide a proteomic landscape of miR-146a's regulatory role in inflammation.
