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Updated: Jun 28, 2025

Quantification of Monocyte Chemotactic Activity In Vivo and Characterization of Blood Monocyte Derived Macrophages
Published on: August 12, 2019
Propranolol Promotes Monocyte-to-Macrophage Differentiation and Enhances Macrophage Anti-Inflammatory and Antioxidant
Sonia Maccari1, Elisabetta Profumo2, Luciano Saso3
1Center for Gender Medicine, Italian National Institute of Health, 00161 Rome, Italy.
Abstract:
Adrenergic pathways represent the main channel of communication between the nervous system and the immune system. During inflammation, blood monocytes migrate within tissue and differentiate into macrophages, which polarize to M1 or M2 macrophages with tissue-damaging or -reparative properties, respectively. This study investigates whether the β-adrenergic receptor (β-AR)-blocking drug propranolol modulates the monocyte-to-macrophage differentiation process and further influences macrophages in their polarization toward M1- and M2-like phenotypes. Six-day-human monocytes were cultured with M-CSF in the presence or absence of propranolol and then activated toward an M1 pro-inflammatory state or an M2 anti-inflammatory state. The chronic exposure of monocytes to propranolol during their differentiation into macrophages promoted the increase in the M1 marker CD16 and in the M2 markers CD206 and CD163 and peroxisome proliferator-activated receptor ɣ expression. It also increased endocytosis and the release of IL-10, whereas it reduced physiological reactive oxygen species. Exposure to the pro-inflammatory conditions of propranolol-differentiated macrophages resulted in an anti-inflammatory promoting effect. At the molecular level, propranolol upregulated the expression of the oxidative stress regulators NRF2, heme oxygenase-1 and NQO1. By contributing to regulating macrophage activities, propranolol may represent a novel anti-inflammatory and immunomodulating compound with relevant therapeutic potential in several inflammatory diseases.
Insights
The beta-adrenergic receptor (β-AR)-blocking drug propranolol influences monocyte differentiation into macrophages. Propranolol demonstrates anti-inflammatory effects by modulating macrophage polarization and oxidative stress, suggesting therapeutic potential.
Area of Science:
- Immunology
- Pharmacology
- Cell Biology
Background:
- Adrenergic pathways link the nervous and immune systems.
- Monocytes differentiate into M1 (tissue-damaging) or M2 (tissue-reparative) macrophages during inflammation.
- Beta-adrenergic receptors (β-ARs) are key mediators in this communication.
Purpose of the Study:
- To investigate if the β-AR blocker propranolol affects monocyte-to-macrophage differentiation.
- To determine propranolol's influence on M1 and M2 macrophage polarization.
- To explore propranolol's therapeutic potential in inflammatory diseases.
Main Methods:
- Human monocytes were cultured with M-CSF and propranolol.
- Cells were differentiated into macrophages and polarized to M1 or M2 phenotypes.
- Macrophage markers (CD16, CD206, CD163), gene expression (NRF2, HO-1, NQO1), IL-10 release, and reactive oxygen species were analyzed.
Main Results:
- Propranolol exposure increased M1 and M2 markers, IL-10 release, and endocytosis.
- Propranolol reduced physiological reactive oxygen species.
- Propranolol-modulated macrophages exhibited an anti-inflammatory effect under pro-inflammatory conditions.
- Upregulation of oxidative stress regulators (NRF2, HO-1, NQO1) was observed.
Conclusions:
- Propranolol modulates monocyte differentiation and macrophage polarization.
- Propranolol exhibits anti-inflammatory and immunomodulatory properties.
- Propranolol holds potential as a therapeutic agent for inflammatory conditions.
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