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Published on: September 26, 2018
MiR-181b Antagonizes Atherosclerotic Plaque Vulnerability Through Modulating Macrophage Polarization by Directly
Tian-Hui An1, Quan-Wei He1, Yuan-Peng Xia1
1Department of Neurology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
Abstract:
Atherosclerotic plaque vulnerability is the major cause for acute stroke and could be regulated by macrophage polarization. MicroRNA-181b (miR-181b) was involved in macrophage differential. Here, we explore whether miR-181b could regulate atherosclerotic plaque vulnerability by modulating macrophage polarization and the underline mechanisms. In acute stroke patients with atherosclerotic plaque, we found that the serum level of miR-181b was decreased. Eight-week apolipoprotein E knockout (ApoE-/-) mice were randomly divided into three groups (N = 10): mice fed with normal saline (Ctrl), mice fed with high-fat diet, and tail vein injection with miRNA agomir negative control (AG-NC)/miR-181b agomir (181b-AG, a synthetic miR-181b agonist). We found that the serum level of miR-181b in AG-NC group was lower than that in Ctrl group. Moreover, 181b-AG could upregulate miR-181b expression, reduce artery burden and attenuate atherosclerotic plaque vulnerability by modulating macrophage polarization. In RAW264.7 cells treated with oxidized low-density lipoprotein (ox-LDL), we found miR-181b could reverse the function of ox-LDL on M1/M2 markers at both mRNA and protein levels. Furthermore, by employing luciferase reporter assay, we found that Notch1 was a direct target of miR-181b and could be regulated by miR-181b in vivo and in vitro. Finally, inhibition of Notch1 could abolish the function of downregulating miR-181b on increasing M2 phenotype macrophages. Our study demonstrates that administration of miR-181b could reduce atherosclerotic plaque vulnerability partially through modulating macrophage phenotype by directly targeting Notch1.
Insights
MicroRNA-181b (miR-181b) reduces atherosclerotic plaque vulnerability by modulating macrophage polarization via targeting Notch1. Lower miR-181b levels are observed in stroke patients, suggesting therapeutic potential.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Immunology
Background:
- Atherosclerotic plaque vulnerability is a primary cause of acute stroke.
- Macrophage polarization plays a critical role in regulating plaque stability.
- MicroRNA-181b (miR-181b) is implicated in macrophage differentiation and function.
Purpose of the Study:
- To investigate the role of miR-181b in regulating atherosclerotic plaque vulnerability.
- To explore the underlying mechanisms involving macrophage polarization.
- To determine if miR-181b can be therapeutically modulated to attenuate plaque instability.
Main Methods:
- Serum miR-181b levels were measured in acute stroke patients with atherosclerotic plaques.
- Apolipoprotein E knockout (ApoE-/-) mice were treated with miR-181b agomir or control.
- In vitro studies used RAW264.7 cells treated with oxidized low-density lipoprotein (ox-LDL) and miR-181b.
- Luciferase reporter assays identified direct targets of miR-181b.
Main Results:
- Serum miR-181b levels were decreased in acute stroke patients and in control mice treated with high-fat diet.
- miR-181b agomir administration reduced arterial burden and plaque vulnerability in ApoE-/- mice.
- miR-181b reversed ox-LDL-induced M1/M2 marker changes in macrophages.
- Notch1 was identified as a direct target of miR-181b, and its inhibition affected M2 macrophage polarization.
Conclusions:
- miR-181b administration can attenuate atherosclerotic plaque vulnerability.
- The mechanism involves modulating macrophage polarization, specifically by targeting Notch1.
- miR-181b represents a potential therapeutic target for reducing stroke risk associated with atherosclerosis.
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