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Updated: Nov 15, 2025

Flow Cytometry Analysis of Immune Cells Within Murine Aortas
Published on: July 1, 2011
Purinergic Signaling in Controlling Macrophage and T Cell Functions During Atherosclerosis Development
Davide Ferrari1, Andrea la Sala2, Daniela Milani3
1Department of Life Science and Biotechnology, Section of Microbiology and Applied Pathology, University of Ferrara, Ferrara, Italy.
Insights
Purinergic signaling influences immune cells in atherosclerosis, impacting cardiovascular disease progression. Understanding these pathways offers potential clinical benefits for managing arterial inflammation and plaque development.
Area of Science:
- Cardiovascular Science
- Immunology
- Pharmacology
Background:
- Atherosclerosis, a leading cause of death, involves LDL accumulation and inflammatory responses in arteries.
- Immune cells like monocytes/macrophages and T lymphocytes play key roles in atherogenesis.
- Purinergic signaling, involving P1 and P2 receptors, modulates immune responses in cardiovascular disease.
Purpose of the Study:
- To review advancements in understanding purinergic modulation of immune cells in atherosclerosis.
- To highlight how purinergic signaling influences pro- and anti-atherosclerotic responses.
- To explore the clinical significance of purinergic signaling in cardiovascular disease.
Main Methods:
- Literature review focusing on purinergic signaling pathways.
- Analysis of immune cell (monocytes/macrophages, T lymphocytes) responses.
- Examination of purinergic modulation in atherogenesis models.
Main Results:
- Purinergic signaling significantly impacts immune cell behavior in atherosclerosis.
- Specific purinergic mediators can promote or inhibit atherosclerotic processes.
- Modulation of purinergic pathways affects inflammatory responses and lesion development.
Conclusions:
- Purinergic signaling is a critical regulator of immune responses in atherosclerosis.
- Targeting purinergic pathways presents potential therapeutic strategies for cardiovascular disease.
- Further research into purinergic modulation could yield novel clinical applications.
Abstract:
Atherosclerosis is a hardening and narrowing of arteries causing a reduction of blood flow. It is a leading cause of death in industrialized countries as it causes heart attacks, strokes, and peripheral vascular disease. Pathogenesis of the atherosclerotic lesion (atheroma) relies on the accumulation of cholesterol-containing low-density lipoproteins (LDL) and on changes of artery endothelium that becomes adhesive for monocytes and lymphocytes. Immunomediated inflammatory response stimulated by lipoprotein oxidation, cytokine secretion and release of pro-inflammatory mediators, worsens the pathological context by amplifying tissue damage to the arterial lining and increasing flow-limiting stenosis. Formation of thrombi upon rupture of the endothelium and the fibrous cup may also occur, triggering thrombosis often threatening the patient's life. Purinergic signaling, i.e., cell responses induced by stimulation of P2 and P1 membrane receptors for the extracellular nucleotides (ATP, ADP, UTP, and UDP) and nucleosides (adenosine), has been implicated in modulating the immunological response in atherosclerotic cardiovascular disease. In this review we will describe advancements in the understanding of purinergic modulation of the two main immune cells involved in atherogenesis, i.e., monocytes/macrophages and T lymphocytes, highlighting modulation of pro- and anti-atherosclerotic mediated responses of purinergic signaling in these cells and providing new insights to point out their potential clinical significance.
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