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Updated: Apr 20, 2026

A Human Ex Vivo Atherosclerotic Plaque Model to Study Lesion Biology
Published on: May 6, 2014
CCL19 and CCL21 modulate the inflammatory milieu in atherosclerotic lesions
Mohammadreza Akhavanpoor1, Christian A Gleissner1, Stephanie Gorbatsch1
1Department of Cardiology, University of Heidelberg, Germany ; DZHK (German Centre for Cardiovascular Research), partner site Heidelberg/Mannheim, Germany.
Insights
Modulating chemokines CCL19 and CCL21 in atherosclerosis may stabilize plaques. This study used bone marrow transplantation in mice, revealing reduced inflammation and increased plaque stability, identifying these chemokines as novel therapeutic targets.
Area of Science:
- Cardiovascular Biology
- Immunology
- Atherosclerosis Research
Background:
- Atherosclerosis is a leading global cause of death, driven by chronic inflammation.
- Elevated CCL19 and CCL21 levels are found in atherosclerotic lesions and patient plasma, but their specific role is unclear.
Purpose of the Study:
- To investigate the role of chemokines CCL19 and CCL21 in atherosclerosis.
- To evaluate the therapeutic potential of modulating CCL19 and CCL21 for atherosclerosis treatment.
Main Methods:
- Bone marrow from mice lacking CCL19 and CCL21 (plt/plt) was transplanted into atherogenic LDL receptor-deficient (Ldlr-/-) mice.
- Analysis of inflammatory cell infiltration, cytokine expression, leukocyte activation, and plaque stability.
Main Results:
- Transplanted mice (plt/plt/Ldlr-/-) showed increased inflammatory cell infiltration but reduced pro-inflammatory cytokine levels (TNFα, IFNγ, IL-6, IL-12, IL-17).
- Leukocyte activation within atherosclerotic lesions was reduced, leading to increased plaque stability despite unchanged lesion development.
Conclusions:
- Modulation of CCL19 and CCL21 serves as a potent immunoregulatory strategy.
- CCL19 and CCL21 represent novel therapeutic targets for stabilizing atherosclerotic lesions.
Abstract:
Despite advances in the pharmacologic and interventional treatment of coronary artery disease, atherosclerosis remains the leading cause of death worldwide. Atherosclerosis is a chronic inflammatory disease, and elevated expression of CCL19 and CCL21 has been observed in ruptured lesions of coronary arteries of patients with myocardial infarction and carotid plaques of patients with ischemic symptoms, as well as in plasma of coronary artery disease patients. However, the exact role of CCL19 and CCL21 in atherosclerosis remains unknown. In order to identify CCL19 and CCL21 as a novel therapeutic target, we performed bone marrow transplantation as an immunomodulatory treatment concept. Bone marrow of plt/plt mice (lacking CCL19 and CCL21-Ser) was transplanted into atherogenic Ldlr(-/-) mice. The study demonstrated a significantly increased inflammatory cellular infiltration into the lesions of plt/plt/Ldlr(-/-) mice versus controls. Although the level of chemoattraction was increased, messenger ribonucleic acid and protein levels in thoracic aorta and serum of several proinflammatory cytokines (TNFα, IFNγ, IL-6, IL-12, and IL-17) were significantly reduced in plt/plt/Ldlr(-/-) versus control mice. Increased influx, accompanied by reduced activation of leukocytes in atherosclerotic lesion, was accompanied by increased plaque stability but unchanged lesion development. In conclusion, modulation of the chemokines CCL19 and CCL21 represents a potent immunoregulatory treatment approach, and thus represents a novel therapeutic target to stabilize atherosclerotic lesions.
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