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Published on: September 3, 2020
Targeting the adaptive immune continuum in atherosclerosis and post-MI injury
Viktoria Juhasz1, Fiona T Charlier2, Tian X Zhao3
1Department of Laboratory Medicine, Medical University of Vienna, Vienna, Austria.
Insights
Adaptive immunity significantly impacts atherosclerosis and myocardial infarction (MI) recovery. Therapies targeting adaptive immunity, like cell-depleting treatments, may offer new treatment strategies for these interconnected inflammatory conditions.
Area of Science:
- Immunology
- Cardiovascular Medicine
- Inflammation Research
Background:
- Atherosclerotic disease involves cholesterol-rich lipoprotein-driven plaque formation in arteries.
- Plaque rupture can cause thrombus formation, leading to myocardial infarction (MI).
- Inflammation is central to atherosclerosis development and cardiac repair post-MI.
Purpose of the Study:
- To dissect immune response networks in atherosclerosis and post-MI cardiac healing.
- To explore immunomodulatory therapies for these interconnected pathologies.
- To evaluate adaptive immunity-targeting therapies for atherosclerosis and post-MI injury.
Main Methods:
- Review and discussion of existing literature on adaptive immunity's role.
- Analysis of cell-depleting therapies as potential treatments.
- Focus on immune system modulation in the context of atherosclerosis and MI.
Main Results:
- Adaptive immunity (B and T lymphocytes) critically regulates atherosclerosis and cardiac repair.
- Myocardial infarction exacerbates atherosclerosis by altering immune responses.
- Understanding the inflammatory continuum is key for effective therapeutic targets.
Conclusions:
- Targeting adaptive immunity offers potential therapeutic strategies for atherosclerosis and post-MI cardiac injury.
- Immunomodulatory approaches need to consider the interplay between these conditions.
- Cell-depleting therapies are a promising area for investigation in managing these inflammatory diseases.
Abstract:
Atherosclerotic disease is a cholesterol-rich lipoprotein particle-driven disease resulting in the formation of atherosclerotic plaques in large and medium size arteries. Rupture or erosion of atherosclerotic plaques can trigger the formation of a thrombus causing the obstruction of the blood flow in the coronary artery and thereby leading to myocardial infarction (MI). Inflammation is a crucial pillar of the mechanisms leading to atherosclerosis and governing the cardiac repair post-MI. Dissecting the complex and sophisticated networks of the immune responses underlying the formation of atherosclerotic plaques and affecting the healing of the heart after MI will allow the designing of highly precise immunomodulatory therapies for these settings. Notably, MI also accelerates atherosclerosis via modulating the response of the immune system. Therefore, for the identification of effective and safe therapeutic targets, it is critical to consider the inflammatory continuum that interconnects the two pathologies and identify immunomodulatory strategies that confer a protective effect in both settings or at least, affect each pathology independently. Adaptive immunity, which consists of B and T lymphocytes, is a major regulator of atherosclerosis and post-MI cardiac repair. Here, we review and discuss the effect of potential adaptive immunity-targeting therapies, such as cell-depleting therapies, in atherosclerosis and post-MI cardiac injury.
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