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Updated: Mar 4, 2026

Three-Dimensional Imaging of Aortic Tissues in Atherosclerosis
Published on: October 25, 2024
Artery tertiary lymphoid organs, neuro-immune interaction and their mediators in atherosclerosis
Silvia Ortona1, Caterina Ivaldo2,3, Luca Liberale3,4
1Department of Experimental Medicine, University of Genoa, Genoa, Italy.
Insights
Artery tertiary lymphoid organs (ATLOs) are newly discovered structures in atherosclerosis. This review explores their neuroimmune interactions and potential as therapeutic targets for cardiovascular diseases like atherosclerosis.
Area of Science:
- Cardiovascular Research
- Immunology
- Neuroscience
Background:
- Atherosclerosis is a chronic inflammatory arterial disease with severe consequences like myocardial infarction and stroke.
- Plaque vulnerability in advanced atherosclerosis is driven by macrophage infiltration, matrix alteration, and microcalcifications.
- Artery tertiary lymphoid organs (ATLOs), composed of immune cells, form in atherosclerotic arteries.
Purpose of the Study:
- To review the architecture of ATLOs and their neuroimmune interactions in atherosclerosis.
- To focus on the role of neuroimmune interactions in carotid stenosis and abdominal aortic aneurysm (AAA).
- To highlight neuronal mediators as biomarkers and therapeutic targets for atherosclerosis.
Main Methods:
- Review of existing literature on ATLOs, neuroimmune interactions, and atherosclerosis.
- Analysis of the role of the central and peripheral nervous systems in regulating ATLOs.
- Exploration of neuronal mediators in plaque instability.
Main Results:
- ATLOs are organized immune niches within atherosclerotic arteries.
- Nervous system pathways influence ATLO composition and function.
- Neuronal mediators show potential as biomarkers and therapeutic targets.
Conclusions:
- Neuroimmune interactions within ATLOs play a significant role in atherosclerosis progression.
- Targeting neuroimmune pathways offers a promising avenue for future atherosclerosis therapies.
- Further research is needed to integrate neuroimmune-based therapies into clinical practice.
Abstract:
Atherosclerosis is a chronic inflammatory disease characterized by the irreversible remodeling of the arterial wall; severe atherosclerotic lesions may lead to life-threatening consequences such as major ischemic events (i.e., myocardial infarction (MI) and stroke) and abdominal aortic aneurysm (AAA) rupture. The severity of the lesions is determined by multiple risk factors that cause systemic and cellular metabolic changes, oxidative damage, cell senescence, and immune activation involving both leukocytes and vascular cells. In advanced stages, macrophage infiltration, alterations of the load-bearing collagenous matrix, and the presence of microcalcifications are the main drivers of plaque vulnerability. Over the last decade, the presence of artery tertiary lymphoid organs (ATLOs) has been established. These structures form during progressive atherosclerosis in the adventitia of large arteries and represent highly organized niches composed of T and B lymphocytes and innate immune cells. More recently, the presence of nerve fibers and the contribution of both the central (CNS) and peripheral (PeriphNS) nervous systems, through the action of sympathetic, parasympathetic, and somatosensory pathways regulating ATLO composition have been demonstrated. However, their role in atherosclerosis progression remains debated. This review explores the architecture of ATLOs and their neuroimmune interactions with the spleen, as a central neuroimmune organ, in atherosclerosis progression, with a particular focus on carotid stenosis and AAA. Furthermore, it highlights the neuronal mediators that could act as biomarkers of plaque instability and promising pharmacological targets. Finally, while still in the preclinical phase, it explores future prospects for integrating neuroimmune-based therapies into current clinical management of atherosclerosis.
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