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Updated: Mar 9, 2026

Quantification of Atherosclerosis in Mice
Published on: June 12, 2019
Aspirin-triggered lipoxin A4 inhibits atherosclerosis progression in apolipoprotein E-/- mice
Marcelo H Petri1, Andrés Laguna-Fernandez1, Hildur Arnardottir1
1Experimental Cardiovascular Research Group, Cardiovascular Medicine Unit, Center for Molecular Medicine, Department of Medicine, Karolinska Institutet, Stockholm, Sweden.
Insights
Aspirin-triggered lipoxin A4 (ATL) reduced atherosclerosis progression in mice by targeting the Fpr2 receptor, decreasing inflammation and lesion size. This suggests ATL has therapeutic potential for treating atherosclerosis.
Area of Science:
- Cardiovascular Research
- Inflammation Biology
- Pharmacology
Background:
- Atherosclerosis involves chronic, non-resolving arterial wall inflammation.
- Aspirin-triggered lipoxin A4 (ATL) is a key mediator in resolving inflammation.
- The therapeutic role of ATL in atherosclerosis remains unexplored.
Purpose of the Study:
- To investigate the effects of ATL and its receptor Fpr2 on atherosclerosis development.
- To evaluate ATL's potential as a therapeutic agent for atherosclerosis.
Main Methods:
- Atherosclerosis was studied in apolipoprotein E deficient (ApoE-/-) mice, with and without Fpr2 receptor expression.
- Mice received ATL or vehicle via osmotic pumps.
- Lesion size, cellular composition, lipid levels, leukocyte counts, and gene expression were analyzed.
Main Results:
- ATL significantly blocked atherosclerosis progression in the aorta.
- ATL reduced macrophage infiltration and apoptotic cells within atherosclerotic lesions.
- ATL decreased pro-inflammatory cytokine and chemokine mRNA levels, independent of circulating leukocyte counts.
- ATL's protective effects were abolished in mice lacking the Fpr2 receptor.
Conclusions:
- ATL inhibits atherosclerosis progression through an Fpr2-mediated reduction in local and systemic inflammation.
- ATL demonstrates therapeutic potential as an anti-inflammatory and pro-resolving agent for atherosclerosis treatment.
Background And Purpose:
Atherosclerosis is characterized by a chronic non-resolving inflammation in the arterial wall. Aspirin-triggered lipoxin A4 (ATL) is a potent anti-inflammatory mediator, involved in the resolution of inflammation. However, the therapeutic potential of immune targeting by means of ATL in atherosclerosis has not previously been explored. The aim of the present study was to determine the effects of ATL and its receptor Fpr2 on atherosclerosis development and progression in apolipoprotein E deficient (ApoE-/- ) mice.
Experimental Approach:
ApoE-/- × Fpr2+/+ and ApoE-/- × Fpr2-/- mice were generated. Four-week-old mice fed a high-fat diet for 4 weeks and 16-week-old mice fed chow diet received osmotic pumps containing either vehicle or ATL for 4 weeks. Atherosclerotic lesion size and cellular composition were measured in the aortic root and thoracic aorta. Lipid levels and leukocyte counts were measured in blood and mRNA was isolated from abdominal aorta and spleen.
Key Results:
ATL blocked atherosclerosis progression in the aortic root and thoracic aorta of ApoE-/- mice. In addition, ATL reduced macrophage infiltration and apoptotic cells in atherosclerotic lesions. The mRNA levels of several cytokines and chemokines in the spleen and aorta were reduced by ATL, whereas circulating leukocyte levels were unchanged. The ATL-induced athero-protection was absent in ApoE-/- mice lacking the Fpr2 receptor.
Conclusion And Implications:
ATL blocked atherosclerosis progression by means of an Fpr2-mediated reduced local and systemic inflammation. These results suggest this anti-inflammatory and pro-resolving agent has therapeutic potential for the treatment of atherosclerosis.
Linked Articles:
This article is part of a themed section on Targeting Inflammation to Reduce Cardiovascular Disease Risk. To view the other articles in this section visit http://onlinelibrary.wiley.com/doi/10.1111/bph.v174.22/issuetoc and http://onlinelibrary.wiley.com/doi/10.1111/bcp.v82.4/issuetoc.
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