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Ultrasound Imaging of the Thoracic and Abdominal Aorta in Mice to Determine Aneurysm Dimensions
Published on: March 8, 2019
miRNA‑378a‑5p attenuates the development of abdominal aortic aneurysm via ABLIM1‑MKL1 signaling pathways
Jing Wang1, Yujia Zou1, Yani Wang1
1State Key Laboratory of Frigid Zone Cardiovascular Diseases, Department of Cardiology and Cardiovascular Research Institute, General Hospital of Northern Theater Command, Shenyang, Liaoning 110016, P.R. China.
Abstract:
Abdominal aortic aneurysm (AAA) is a fatal cardiovascular disease with no effective drug treatment currently available. The aberrant expression levels of microRNAs (miRNAs or miRs) contribute to AAA pathogenesis. In the present study, miRNA microarray analysis was performed to screen for differentially expressed miRNAs in the aortas of AAA mice compared with those in control mice, and to clarify the role and mechanism of miRNA‑378a‑5p (miR‑378a‑5p) in the AAA development. A comprehensive miRNA microarray analysis was conducted to screen for differentially expressed miRNAs in the aortas of AAA mice and control mice. Reverse transcription‑quantitative polymerase chain reaction (RT‑qPCR) was used to detect the expression levels of miR‑378a‑5p in the serum and aortas of patients with AAA and mice. To clarify the role of miR‑378a‑5p in the AAA development in vivo, miR‑378a‑5p antagomir and angomir were administered to ApoE‑/‑ mice using tail venous injection, followed by Angiotensin II (Ang II) infusion. Next, the role of miR‑378a‑5p in the phenotypic switching and migration of vascular smooth muscle cells (VSMCs) was examined in vivo and in vitro. Mechanistically, the targets of miR‑378a‑5p were identified by bioinformatics analysis, luciferase assay, RT‑qPCR and western blotting. Co‑immunoprecipitation assay combined with mass spectrometry were carried out for excavating potential downstream effectors. The expression of miR‑378a‑5p was decreased in the serum and aortas of patients with AAA (aortic dissection) and mice, and tumor necrosis factor‑α‑treated VSMCs. In vivo, the antagomir‑378a‑5p aggravated AAA formation, as evidenced by a larger maximal aortic diameter and greater medial elastin degradation than in control mice. miR‑378a‑5p angomir had the opposite effect. In vitro, miR‑378a‑5p overexpression significantly promoted the contraction ability and suppressed the migration of VSMCs, whereas miR‑378a‑5p knockdown inhibited the contraction ability and increased the migration of VSMCs. Mechanistically, it was identified that miR‑378a‑5p played a protective role in AAA development by regulating actin‑binding LIM protein 1 (ABLIM1)‑megakaryoblastic leukemia 1 (MKL1) pathway. miR‑378a‑5p exerts protective effects against AAA by maintaining VSMCs homeostasis via the ABLIM1‑MKL1 pathway. Therefore, targeting miR‑378a‑5p may be an attractive therapeutic strategy for AAA treatment.
Insights
Lowered microRNA-378a-5p levels promote abdominal aortic aneurysm (AAA) by affecting vascular smooth muscle cell function. Restoring miR-378a-5p shows therapeutic potential for AAA treatment.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Genetics and Genomics
Background:
- Abdominal aortic aneurysm (AAA) is a life-threatening cardiovascular condition lacking effective drug therapies.
- Aberrant microRNA (miRNA) expression is implicated in AAA pathogenesis.
- MicroRNA-378a-5p (miR-378a-5p) is investigated for its role in AAA development.
Purpose of the Study:
- To identify differentially expressed miRNAs in AAA.
- To elucidate the role and mechanism of miR-378a-5p in AAA development.
- To explore miR-378a-5p as a potential therapeutic target for AAA.
Main Methods:
- miRNA microarray analysis and RT-qPCR to assess miR-378a-5p expression in AAA models and patients.
- In vivo studies using antagomir and angomir in ApoE-/- mice infused with Angiotensin II.
- In vitro experiments examining vascular smooth muscle cell (VSMC) phenotype and migration.
- Bioinformatics, luciferase assays, co-immunoprecipitation, and mass spectrometry to identify molecular targets and pathways.
Main Results:
- miR-378a-5p expression was significantly decreased in AAA tissues and serum.
- In vivo, miR-378a-5p inhibition exacerbated AAA formation, while its augmentation conferred protection.
- In vitro, miR-378a-5p overexpression promoted VSMC contraction and inhibited migration; knockdown had opposite effects.
- miR-378a-5p regulates the actin-binding LIM protein 1 (ABLIM1)-megakaryoblastic leukemia 1 (MKL1) pathway.
Conclusions:
- miR-378a-5p plays a crucial protective role in AAA development.
- The protective mechanism involves maintaining VSMC homeostasis through the ABLIM1-MKL1 pathway.
- Targeting miR-378a-5p represents a promising therapeutic strategy for AAA.
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