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Quantitative Analysis and Characterization of Atherosclerotic Lesions in the Murine Aortic Sinus
Published on: December 7, 2013
Macrophages in vascular inflammation--From atherosclerosis to vasculitis
Tsuyoshi Shirai1, Marc Hilhorst, David G Harrison
1Division of Immunology and Rheumatology, Department of Medicine, Stanford University School of Medicine , Stanford, CA , USA and.
Insights
Macrophages are key immune cells in vascular diseases like atherosclerosis and vasculitis. Their versatile functions and susceptibility to reprogramming offer potential for new anti-inflammatory therapies.
Area of Science:
- Immunology
- Pathology
- Cardiovascular Medicine
Background:
- Vascular inflammatory diseases encompass atherosclerosis and vasculitis, ranging in prevalence and severity.
- Atherosclerosis involves chronic lesion development and atherothrombosis, while vasculitides cause rapid organ failure.
- Macrophages are central to the pathogenesis of both conditions, influencing disease progression and complications.
Purpose of the Study:
- To elucidate the pivotal role of macrophages in the pathogenesis of atherosclerosis and vasculitis.
- To explore the functional plasticity of macrophages in vascular inflammation.
- To identify macrophages as potential therapeutic targets for anti-inflammatory interventions.
Main Methods:
- Comparative analysis of macrophage roles in atherosclerosis and vasculitis.
- Investigation of macrophage differentiation and functional commitment influenced by other immune cells.
- Review of macrophage-mediated pathogenic functions including cytokine release, oxidative stress, and antigen presentation.
Main Results:
- Macrophages are critical in atherosclerosis for lipid removal, tissue damage, and remodeling.
- In vasculitides, macrophages contribute to granuloma formation, enhancing immune cell interactions and inflammation.
- Macrophage plasticity allows diverse pathogenic functions but also presents opportunities for therapeutic reprogramming.
Conclusions:
- Macrophages are versatile immune cells central to vascular inflammatory diseases.
- Their plasticity makes them amenable to reprogramming, highlighting their potential as targets for novel anti-inflammatory strategies.
Abstract:
The spectrum of vascular inflammatory disease ranges from atherosclerosis and hypertension, widespread conditions affecting large proportions of the population, to the vasculitides, rare syndromes leading to fast and irreversible organ failure. Atherosclerosis progresses over decades, inevitably proceeding through multiple phases of disease and causes its major complications when the vessel wall lesion ruptures, giving rise to lumen-occlusive atherothrombosis. Vasculitides of medium and large arteries progress rapidly, causing tissue ischemia through lumen-occlusive intimal hyperplasia. In both disease entities, macrophages play a decisive role in pathogenesis, but function in the context of other immune cells that direct their differentiation and their functional commitments. In atherosclerosis, macrophages are involved in the removal of lipids and tissue debris and make a critical contribution to tissue damage and wall remodeling. In several of the vasculitides, macrophages contribute to granuloma formation, a microstructural platform optimizing macrophage-T-cell interactions, antigen containment and inflammatory amplification. By virtue of their versatility and plasticity, macrophages are able to promote a series of pathogenic functions, ranging from the release of cytokines and enzymes, the production of reactive oxygen species, presentation of antigen and secretion of tissue remodeling factors. However, as short-lived cells that lack memory, macrophages are also amendable to reprogramming, making them promising targets for anti-inflammatory interventions.
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