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Ultrasound Imaging of the Thoracic and Abdominal Aorta in Mice to Determine Aneurysm Dimensions
Published on: March 8, 2019
MiR-126a-5p limits the formation of abdominal aortic aneurysm in mice and decreases ADAMTS-4 expression
Lei Li1,2, Wei Ma3, Shuang Pan4
1Department of Vascular Surgery, The Second Affiliated Hospital of Dalian Medical University, Dalian, China.
Abstract:
Abdominal aortic aneurysm (AAA) is a serious vascular disease featured by inflammatory infiltration in aortic wall, aortic dilatation and extracellular matrix (ECM) degradation. Dysregulation of microRNAs (miRNAs) is implicated in AAA progress. By profiling miRNA expression in mouse AAA tissues and control aortas, we noted that miR-126a-5p was down-regulated by 18-fold in AAA samples, which was further validated with real-time qPCR. This study was performed to investigate miR-126a-5p's role in AAA formation. In vivo, a 28-d infusion of 1 μg/kg/min Angiotensin (Ang) II was used to induce AAA formation in Apoe-/- mice. MiR-126a-5p (20 mg/kg; MIMAT0000137) or negative control (NC) agomirs were intravenously injected to mice on days 0, 7, 14 and 21 post-Ang II infusion. Our data showed that miR-126a-5p overexpression significantly improved the survival and reduced aortic dilatation in Ang II-infused mice. Elastic fragment and ECM degradation induced by Ang II were also ameliorated by miR-126a-5p. A strong up-regulation of ADAM metallopeptidase with thrombospondin type 1 motif 4 (ADAMTS-4), a secreted proteinase that regulates matrix degradation, was observed in smooth muscle cells (SMCs) of aortic tunica media, which was inhibited by miR-126a-5p. Dual-luciferase results demonstrated ADAMTS-4 as a new and valid target for miR-126a-5p. In vitro, human aortic SMCs (hASMCs) were stimulated by Ang II. Gain- and loss-of-function experiments further confirmed that miR-126-5p prevented Ang II-induced ECM degradation, and reduced ADAMTS-4 expression in hASMCs. In summary, our work demonstrates that miR-126a-5p limits experimental AAA formation and reduces ADAMTS-4 expression in abdominal aortas.
Insights
MicroRNA-126a-5p (miR-126a-5p) is crucial for preventing abdominal aortic aneurysm (AAA) formation. Restoring miR-126a-5p levels protects against aortic dilatation and extracellular matrix degradation by targeting ADAMTS-4.
Area of Science:
- Vascular Biology
- Molecular Medicine
- Genetics
Background:
- Abdominal aortic aneurysm (AAA) involves aortic wall inflammation, dilation, and extracellular matrix (ECM) degradation.
- MicroRNA (miRNA) dysregulation is implicated in AAA pathogenesis.
- miR-126a-5p was found to be significantly downregulated in AAA tissues.
Purpose of the Study:
- To investigate the role of miR-126a-5p in the formation of abdominal aortic aneurysm.
- To explore the therapeutic potential of miR-126a-5p in AAA.
- To identify the molecular targets of miR-126a-5p in AAA.
Main Methods:
- Angiotensin II infusion in Apoe-/- mice to induce experimental AAA.
- Intravenous injection of miR-126a-5p agomir or negative control.
- Assessment of survival, aortic diameter, ECM degradation, and ADAMTS-4 expression.
- Dual-luciferase reporter assays and in vitro studies using human aortic smooth muscle cells (hASMCs).
Main Results:
- Overexpression of miR-126a-5p significantly improved survival and reduced aortic dilatation in Ang II-infused mice.
- miR-126a-5p ameliorated Ang II-induced elastic fragment and ECM degradation.
- ADAM metallopeptidase with thrombospondin type 1 motif 4 (ADAMTS-4) was identified as a direct target of miR-126a-5p and its expression was inhibited by miR-126a-5p.
- In vitro experiments confirmed that miR-126a-5p prevented Ang II-induced ECM degradation and reduced ADAMTS-4 expression in hASMCs.
Conclusions:
- miR-126a-5p plays a protective role in limiting experimental AAA formation.
- miR-126a-5p exerts its protective effects by inhibiting ADAMTS-4 expression and subsequent ECM degradation.
- miR-126a-5p represents a potential therapeutic target for AAA treatment.

