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Digital PCR for Quantifying Circulating MicroRNAs in Acute Myocardial Infarction and Cardiovascular Disease
Published on: July 3, 2018
Diagnostic Performance of Circulating miRNAs and Extracellular Vesicles in Acute Ischemic Stroke
Ceren Eyileten1,2, Daniel Jakubik1, Andleeb Shahzadi3
1Department of Experimental and Clinical Pharmacology, Centre for Preclinical Research and Technology (CePT), Medical University of Warsaw, Banacha 1B Str., 02-097 Warsaw, Poland.
Background:
Increased inflammation activates blood coagulation system, higher platelet activation plays a key role in the pathophysiology of ischemic stroke (IS). During platelet activation and aggregation process, platelets may cause increased release of several proinflammatory, and prothrombotic mediators, including microRNAs (miRNAs) and extracellular vesicles (EVs). In the current study we aimed to assess circulating miRNAs profile related to platelet function and inflammation and circulating EVs from platelets, leukocytes, and endothelial cells to analyse their diagnostic and predictive utility in patients with acute IS.
Methods:
The study population consisted of 28 patients with the diagnosis of the acute IS. The control group consisted of 35 age- and gender-matched patients on acetylsalicylic acid (ASA) therapy without history of stroke and/or TIA with established stable coronary artery disease (CAD) and concomitant cardiovascular risk factors. Venous blood samples were collected from the control group and patients with IS on ASA therapy (a) 24 h after onset of acute IS, (b) 7-days following index hospitalization. Flow cytometry was used to determine the concentration of circulating EVs subtypes (from platelets, leukocytes, and endothelial cells) in platelet-depleted plasma and qRT-PCR was used to determine several circulating plasma miRNAs (miR-19a-3p, miR-186-5p and let-7f).
Results:
Patients with high platelet reactivity (HPR, based on arachidonic acid-induced platelet aggregometry) had significantly elevated platelet-EVs (CD62+) and leukocyte-EVs (CD45+) concentration compared to patients with normal platelet reactivity at the day of 1 acute-stroke (p = 0.012, p = 0.002, respectively). Diagnostic values of baseline miRNAs and EVs were evaluated with receiver operating characteristic (ROC) curve analysis. The area under the ROC curve for miR-19a-3p was 0.755 (95% CI, 0.63-0.88) p = 0.004, for let-7f, it was 0.874 (95% CI, 0.76-0.99) p = 0.0001; platelet-EVs was 0.776 (95% CI, 0.65-0.90) p = 0.001, whereas for leukocyte-EVs, it was 0.715 (95% CI, 0.57-0.87) p = 0.008. ROC curve showed that pooling the miR-19a-3p expressions, platelet-EVs, and leukocyte-EVs concentration yielded a higher AUC than the value of each individual biomarker as AUC was 0.893 (95% CI, 0.79-0.99). Patients with moderate stroke had significantly elevated miR-19a-3p expression levels compared to patients with minor stroke at the first day of IS. (AUC: 0.867, (95% CI, 0.74-0.10) p = 0.001).
Conclusion:
Combining different biomarkers of processes underlying IS pathophysiology might be beneficial for early diagnosis of ischemic events. Thus, we believe that in the future circulating biomarkers might be used in the prehospital phase of IS. In particular, circulating plasma EVs and non-coding RNAs including miRNAs are interesting candidates as bearers of circulating biomarkers due to their high stability in the blood and making them highly relevant biomarkers for IS diagnostics.
Insights
Combining circulating microRNAs (miRNAs) and extracellular vesicles (EVs) shows promise for early ischemic stroke (IS) diagnosis. These biomarkers, derived from platelets and leukocytes, can be detected in blood and may aid prehospital assessment.
Area of Science:
- Biomarkers and Diagnostics
- Cardiovascular Research
- Translational Medicine
Background:
- Inflammation and platelet activation are central to ischemic stroke (IS) pathophysiology.
- Platelets release pro-inflammatory and pro-thrombotic mediators, including microRNAs (miRNAs) and extracellular vesicles (EVs).
- Assessing circulating miRNAs and EVs offers potential for understanding IS.
Purpose of the Study:
- To evaluate circulating miRNAs and EVs profiles related to platelet function and inflammation in acute IS patients.
- To analyze the diagnostic and predictive utility of these circulating biomarkers.
- To explore the potential of these biomarkers for early IS detection.
Main Methods:
- Study included 28 acute IS patients and 35 controls on acetylsalicylic acid (ASA) therapy.
- Blood samples collected 24h and 7 days post-IS onset.
- Flow cytometry used for circulating EVs subtypes (platelet, leukocyte, endothelial cell) quantification; qRT-PCR for plasma miRNAs (miR-19a-3p, miR-186-5p, let-7f).
Main Results:
- Elevated platelet-EVs and leukocyte-EVs observed in patients with high platelet reactivity.
- Receiver operating characteristic (ROC) analysis showed significant diagnostic values for miR-19a-3p, let-7f, platelet-EVs, and leukocyte-EVs.
- Combining miR-19a-3p, platelet-EVs, and leukocyte-EVs yielded a higher AUC (0.893) for IS diagnosis.
Conclusions:
- Combining biomarkers of IS pathophysiology may improve early diagnosis.
- Circulating plasma EVs and miRNAs are stable and relevant biomarkers for IS diagnostics.
- These biomarkers hold potential for use in the prehospital phase of IS management.

