Related Experiment Video
Updated: Dec 13, 2025

MicroRNA Based Liquid Biopsy: The Experience of the Plasma miRNA Signature Classifier MSC for Lung Cancer Screening
Published on: October 26, 2017
Plasma endothelial microvesicles and their carrying miRNA-155 serve as biomarkers for ischemic stroke
Huiting Zhang1, Guanghua Chen2, Wenji Qiu3
1Guangdong Key Laboratory of Age-Related Cardiac and Cerebral Diseases, Institute of Neurology, Affiliated Hospital of Guangdong Medical University, Zhanjiang, China.
Abstract:
Endothelial microvesicles (EMVs) could reflect the status of endothelial cells (ECs) which are involved in the pathogenesis of ischemic stroke (IS). MiR-155 could regulate EC functions. However, their roles in IS remain unclear. This study aimed to investigate the levels of plasma EMVs and EMVs carrying miRNA-155 (EMVs-miR-155) in IS patients to explore their potential roles as biomarkers. Ninety-three IS patients and 70 controls were recruited in this study. The levels of circulating EMVs and EMVs-miR-155 were detected by fluorescence nanoparticle tracking analysis and quantitative real-time PCR, respectively. The correlations between level of EMVs/EMVs-miR-155 and the onset time, severity, infarct volume, and subtypes of IS were analyzed. The severity and infarct volume were assessed by NIHSS and magnetic resonance imaging, respectively. Multivariate logistic regression analysis was used to investigate the risk factors of IS. The ROC curve and area under ROC curve (AUC) of EMVs and EMVs-miR-155 were determined. The levels of plasma EMVs and EMVs-miR-155 were increased significantly in acute and subacute stages of IS and remained unchanged in chronic stage, and were positively related to the infarct volume and NIHSS scores and were associated with large artery atherosclerosis and cardioembolism subtypes defined by Trial of Org 10 172 in acute stroke treatment (TOAST) classification. Multivariate logistic regression analysis demonstrated that plasma EMVs and EMVs-miR-155 were significant and independent risk factors of IS and their AUC were 0.778 and 0.851, respectively, and increased to 0.892 after combination. Our study suggests that plasma EMVs and EMVs-miR-155 are promising biomarkers for IS. The diagnostic value of EMVs-miR-155 is higher and their combination is the best.
Insights
Plasma endothelial microvesicles (EMVs) and EMVs carrying miRNA-155 (EMVs-miR-155) show elevated levels in ischemic stroke (IS) patients. These biomarkers are linked to stroke severity and subtypes, offering diagnostic potential for IS.
Area of Science:
- Biomedical science
- Molecular biology
- Neurology
Background:
- Endothelial microvesicles (EMVs) reflect endothelial cell (EC) status, crucial in ischemic stroke (IS) pathogenesis.
- MiRNA-155's role in EC function and IS is not fully understood.
- Investigating EMVs and EMVs-miR-155 as potential IS biomarkers is warranted.
Purpose of the Study:
- To determine plasma levels of EMVs and EMVs-miR-155 in IS patients.
- To explore the correlation of EMVs and EMVs-miR-155 with IS characteristics.
- To evaluate their diagnostic value for IS.
Main Methods:
- Quantification of plasma EMVs using fluorescence nanoparticle tracking analysis.
- Measurement of EMVs-miR-155 via quantitative real-time PCR.
- Correlation analysis with IS severity (NIHSS), infarct volume (MRI), and TOAST subtypes; ROC analysis.
Main Results:
- Plasma EMVs and EMVs-miR-155 levels were significantly increased in acute/subacute IS stages.
- Elevated levels correlated positively with infarct volume and NIHSS scores.
- EMVs and EMVs-miR-155 were independent risk factors for IS, with combined AUC of 0.892.
Conclusions:
- Plasma EMVs and EMVs-miR-155 are promising diagnostic biomarkers for IS.
- EMVs-miR-155 demonstrates higher diagnostic value individually.
- Combined analysis of EMVs and EMVs-miR-155 provides the best diagnostic performance for IS.
More Related Videos
07:55Harnessing the Power of MicroRNA Cargoes in Small Extracellular Vesicles Released from Fresh-Frozen Human Brain Sections
Published on: November 8, 2024
04:41Digital PCR for Quantifying Circulating MicroRNAs in Acute Myocardial Infarction and Cardiovascular Disease
Published on: July 3, 2018