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Updated: Mar 7, 2026

Flow Cytometry-Based Quantification and Analysis of Myocardial B-Cells
Published on: August 17, 2022
Opposing roles of B lymphocyte subsets in atherosclerosis
Tin Kyaw1,2, Peter Tipping2, Alex Bobik1,3
1a Australia and Baker IDI Heart and Diabetes Institute , Victoria , Australia.
Insights
Targeting B2 cells and activating B1a cells shows promise in combating atherosclerosis. This approach may reduce the risk of heart attacks and strokes by modulating immune responses within blood vessels.
Area of Science:
- Immunology
- Cardiovascular Disease Research
Background:
- Atherosclerosis, a leading cause of death, involves cholesterol-driven immune-inflammatory lesions.
- Vulnerable atherosclerotic plaques can rupture, leading to heart attacks and strokes.
Purpose of the Study:
- To investigate the distinct roles of B2 and B1a cells in atherosclerosis.
- To explore therapeutic strategies targeting B cell subsets for atherosclerosis prevention.
Main Methods:
- Studies in mouse models of atherosclerosis.
- Administration of monoclonal antibodies (mAbs) to deplete B2 cells or activate B1a cells.
- Assessment of atherosclerotic lesion development and characteristics.
Main Results:
- Proatherogenic B2 cells promote lesion development via IgG production, TNFα secretion, and CD4 T cell activation.
- Atheroprotective B1a cells reduce lesion severity by secreting IgM, scavenging apoptotic cells and oxidized LDL.
- Depleting B2 cells or activating B1a cells ameliorates atherosclerosis in experimental models.
Conclusions:
- Modulating B cell subsets offers a potential therapeutic strategy for atherosclerosis.
- Reducing atherogenic B2 cells and/or activating atheroprotective B1a cells may prevent cardiovascular events.
Abstract:
Atherosclerosis is initiated by cholesterol entry into arteries that triggers chronic immune-inflammatory lesions in the vessels. Early lesions are clinically insignificant but advanced complex lesions and vulnerable rupture prone lesions impact on quality of life and can be life threatening. Rupture of vulnerable atherosclerotic lesions initiates thrombotic occlusion of vital arteries precipitating heart attacks and strokes that remain major killers globally despite therapeutic use of statins to lower blood cholesterol levels. Conventional B2 cells are proatherogenic whereas peritoneal Bla cells are atheroprotective. Depletion of B2 cells by administration of mAb to CD20 or to BAFF receptor or in BAFF receptor-deficient mice ameliorates atherosclerosis. B2 cells may promote atherosclerosis by production of IgG, secretion of proinflammatory cytokine TNFα and activation of CD4 T cells. Together these B2 cell mechanisms contribute to generation of rupture-prone vulnerable atherosclerotic plaques characterised by large necrotic cores. In contrast, peritoneal Bla cells protect against atherosclerosis by secretion of natural IgM that scavenges apoptotic cells and oxidised LDL and reduces necrotic cores in atherosclerotic lesions. These atheroprotective effects can be further increased by stimulating Bla cells by administration of apoptotic cells, liposomes of phosphatidylserine abundant on surfaces of apoptotic cell, by mAb to TIM1, a phosphatidylserine receptor expressed by B1a cells and by TLR4-MyD88 activation. Experimental studies of atherosclerosis in mouse models indicate that reductions in atherogenic B2 cells and/or activation of atheroprotective B1a cells protects against atherosclerosis development, findings which have potential for clinical translation to reduce risks of deaths from heart attacks and strokes.
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