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Quantitative Analysis of Cellular Composition in Advanced Atherosclerotic Lesions of Smooth Muscle Cell Lineage-Tracing Mice
Published on: February 20, 2019
Tofacitinib ameliorates atherosclerosis and reduces foam cell formation in apoE deficient mice
Zaicun Wang1, Shumei Wang2, Zunzhe Wang3
1Department of Biomedical Engineering, College of Engineering, Peking University, Beijing, 100871, China.
Abstract:
Atherosclerosis is a chronic inflammatory cardiovascular disease with high mortality worldwide. Tofacitinib (CP-690,550), an oral small-molecule Janus kinase inhibitor, has been shown to be effective in the treatment of rheumatoid arthritis, autoimmune encephalomyelitis and ulcerative colitis. However, its protective effect against atherosclerosis remains poorly understood. The aim of the present study was to evaluate the effects of Tofacitinib on atherogenic diet (ATD)-induced atherosclerosis using apolipoprotein E deficient (apoE-/-) mice. Atherosclerosis-prone apoE-/- mice were fed with ATD and treated with or without Tofacitinib through intragastrical administration (10 mg kg-1 day-1) for 8 weeks. Our results showed that Tofacitinib did not change plasma lipids, while significantly reduced the levels of plasma pro-inflammatory cytokines IL-6 and TNF-α. It also significantly attenuated atherosclerotic plaque lesion in the aortic root and macrophages contained in plaque as shown with Mac2 immuno-staining. Peritoneal macrophages (PMC) were separated from apoE-/- mice fed with 8-week ATD, and then subjected to inflammation tests. Flow cytometry analysis of F4/80 and CD206 and mRNA levels of M1 and M2 macrophages markers showed that M1 macrophages decreased while M2 macrophages increased in Tofacitinib treated group. Expressions of other inflammatory genes also indicated an anti-inflammatory status in mice treated with Tofacitinib. Ox-LDL was used to induce foam cell formation from PMC in wild type mice, and the results displayed a reduced formation of foam cells and decreased inflammation in mice with Tofacitinib administration (1 μM). The mRNA and protein levels of ATP binding cassette subfamily A member 1 (ABCA1), a key gene involved in cholesterol efflux, remarkably increased, while it was absence of alterations in scavenger receptors expression. Therefore, we demonstrated that Tofacitinib could attenuate atherosclerosis and foam cells formation by inhibiting inflammation and upregulating ABCA1 expression.
Insights
Tofacitinib reduces atherosclerosis by decreasing inflammation and promoting cholesterol efflux. This Janus kinase inhibitor treatment in mice lowered inflammatory markers and plaque formation, offering a potential therapeutic strategy for cardiovascular disease.
Area of Science:
- Cardiovascular Science
- Immunology
- Pharmacology
Background:
- Atherosclerosis is a leading cause of global mortality.
- Tofacitinib is an effective Janus kinase inhibitor for autoimmune diseases.
- Its role in atherosclerosis is not well understood.
Purpose of the Study:
- To investigate the protective effects of Tofacitinib against atherosclerosis.
- To evaluate Tofacitinib's impact on inflammation and plaque development in a mouse model.
Main Methods:
- Atherosclerosis was induced in apolipoprotein E deficient (apoE-/-) mice using an atherogenic diet (ATD).
- Mice were treated with Tofacitinib (10 mg/kg/day) for 8 weeks.
- Plasma cytokines, atherosclerotic lesions, macrophage polarization, and cholesterol efflux genes (ABCA1) were analyzed.
Main Results:
- Tofacitinib did not alter plasma lipids but significantly reduced IL-6 and TNF-α.
- It attenuated atherosclerotic plaque lesions and macrophage infiltration.
- Tofacitinib promoted M2 macrophage polarization and increased ABCA1 expression, reducing foam cell formation.
Conclusions:
- Tofacitinib demonstrates a protective effect against atherosclerosis in apoE-/- mice.
- The mechanism involves inhibiting inflammation and upregulating ABCA1 expression for cholesterol efflux.
- Tofacitinib presents a potential therapeutic agent for atherosclerosis.
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