Related Experiment Video
Updated: Dec 22, 2025

Polarization and Characterization of M1 and M2 Human Monocyte-Derived Macrophages on Implant Surfaces
Published on: December 6, 2024
MicroRNA-155 Implication in M1 Polarization and the Impact in Inflammatory Diseases
Sergiu Pasca1, Ancuta Jurj2, Bobe Petrushev3
1Department of Hematology, Iuliu Hatieganu University of Medicine and Pharmacy, Cluj-Napoca, Romania.
Abstract:
Macrophages are known to have an impact in cytokine signaling in the myriad of organs in which they reside and are classically known to be either pro-inflammatory (M1), anti-inflammatory (M2). Different classes of signaling molecules influence these states, of which, microRNAs represent key modulators. These are short RNA species approximately 21 to 23 nucleotides long that generally act by binding to the 3' untranslated region of mRNAs, regulating their translation, and, thus, the quantity of protein they encode. From these species, microRNA-155 was observed to be of great importance for M1 polarization. Because of it's major implication in M1 polarization microRNA-155 was shown to be implicated in different inflammatory diseases. To name a few, microRNA-155 was shown to be modified in patients with asthma and to correlate with asthma symptoms in mouse model; it has been shown to modulate the activity of foam cells and influence the dimensions of the atherosclerotic plaque and it has also been shown to be of crucial influence in transducing the signal of LPS in septic shock. Because of this, the current review aims to offer an overview of the role of microRNA-155 in M1 polarization, the implication that this poses for the pathophysiology of inflammatory diseases and the potential therapeutic possibilities that this knowledge might bring. Currently, microRNA-155 has been used in clinical trials as a marker of inflammation, but the question remains if it's inhibition will be useful in inflammatory diseases, as other products might have a better cost/benefit ratio.
Insights
MicroRNA-155 is crucial for pro-inflammatory (M1) macrophage polarization and implicated in inflammatory diseases like asthma and atherosclerosis. Its role in M1 polarization suggests potential therapeutic strategies, though cost-benefit requires further evaluation.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- Macrophages exist in pro-inflammatory (M1) and anti-inflammatory (M2) states, influencing cytokine signaling.
- MicroRNAs are short RNA molecules that regulate gene expression by targeting messenger RNAs (mRNAs).
- MicroRNA-155 has emerged as a key regulator of M1 macrophage polarization.
Purpose of the Study:
- To review the role of microRNA-155 in M1 polarization.
- To explore the implications of microRNA-155 in inflammatory disease pathophysiology.
- To discuss potential therapeutic applications targeting microRNA-155.
Main Methods:
- Literature review of studies investigating microRNA-155.
- Analysis of microRNA-155's function in M1 polarization.
- Examination of microRNA-155's involvement in inflammatory conditions.
Main Results:
- MicroRNA-155 is critical for M1 polarization.
- Dysregulation of microRNA-155 is linked to asthma, atherosclerosis, and septic shock.
- MicroRNA-155 influences key signaling pathways in inflammation.
Conclusions:
- MicroRNA-155 plays a significant role in M1 polarization and inflammatory diseases.
- Targeting microRNA-155 offers potential therapeutic avenues.
- Further research is needed to determine the clinical utility and cost-effectiveness of microRNA-155 inhibition.
Related Concept Videos
MicroRNAs
MicroRNAs

