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Digital PCR for Quantifying Circulating MicroRNAs in Acute Myocardial Infarction and Cardiovascular Disease
Published on: July 3, 2018
Circulating MicroRNAs and myocardial involvement severity in chronic Chagas cardiomyopathy
Sergio Alejandro Gómez-Ochoa1, Paula Katherine Bautista-Niño2, Lyda Z Rojas3
1Institute of Social and Preventive Medicine (ISPM), University of Bern, Bern, Switzerland.
Insights
This study found that higher levels of miR-223-5p are linked to better heart function in Chronic Chagas Cardiomyopathy (CCM). Low miR-223-5p may worsen CCM, potentially through receptor tyrosine kinase signaling pathways.
Area of Science:
- Cardiology
- Molecular Biology
- Biochemistry
Background:
- Chronic Chagas Cardiomyopathy (CCM) involves complex inflammatory, microvascular, and neuroendocrine processes.
- Understanding microRNAs' role in CCM severity and myocardial injury is limited.
Purpose of the Study:
- To investigate the association between circulating microRNAs and clinical markers of disease severity in CCM.
- To explore the prognostic value of specific microRNAs in patients with CCM.
Main Methods:
- A prospective cohort study included 74 patients with CCM and reduced ejection fraction.
- Six circulating microRNAs were quantified and correlated with NT-proBNP and echocardiographic parameters.
- Cox Proportional Hazard models assessed the prediction of a composite outcome (mortality, transplantation, LVAD).
Main Results:
- Increased miR-223-5p levels were significantly associated with improved myocardial function markers, including left atrium area and left ventricle volumes.
- Higher miR-223-5p correlated with better ejection fraction and lower NT-proBNP.
- No microRNAs predicted the composite outcome; miR-223-5p target genes involved receptor tyrosine kinase signaling.
Conclusions:
- miR-223-5p is associated with clinical parameters in CCM, suggesting its role in disease progression.
- Receptor tyrosine kinase signaling pathways may mediate the link between low miR-223-5p and CCM worsening.
Background:
Chronic Chagas Cardiomyopathy (CCM) is characterized by a unique pathophysiology in which inflammatory, microvascular and neuroendocrine processes coalesce in the development of one of the most severe cardiomyopathies affecting humans. Despite significant advances in understanding the molecular mechanisms involved in this disease, scarce information is available regarding microRNAs and clinical parameters of disease severity. We aimed to evaluate the association between circulating levels of six microRNAs with markers of myocardial injury and prognosis in this population.
Methods:
Patients with CCM and reduced ejection fraction were included in a prospective exploratory cohort study. We assessed the association of natural log-transformed values of six circulating microRNAs (miR-34a-5p, miR-208a-5p, miR-185-5p, miR-223-5p, let-7d-5p, and miR-454-5p) with NT-proBNP levels and echocardiographic variables using linear regression models adjusted for potential confounders. By using Cox Proportional Hazard models, we examined whether levels of microRNAs could predict a composite outcome (CO), including all-cause mortality, cardiac transplantation, and implantation of a left ventricular assist device (LVAD). Finally, for mRNAs showing significant associations, we predicted the target genes and performed pathway analyses using Targetscan and Reactome Pathway Browser.
Results:
Seventy-four patients were included (59% males, median age: 64 years). After adjustment for age, sex, body mass index, and heart failure medications, only increasing miR-223-5p relative expression levels were significantly associated with better myocardial function markers, including left atrium area (Coef. -10.2; 95% CI -16.35; -4.09), end-systolic (Coef. -45.3; 95% CI -74.06; -16.61) and end-diastolic volumes (Coef. -46.1; 95% CI -81.99; -10.26) of the left ventricle. Moreover, we observed that higher miR-223-5p levels were associated with better left-ventricle ejection fraction and lower NT-proBNP levels. No associations were observed between the six microRNAs and the composite outcome. A total of 123 target genes for miR-223-5p were obtained. From these, several target pathways mainly related to signaling by receptor tyrosine kinases were identified.
Conclusions:
The present study found an association between miR-223-5p and clinical parameters of CCM, with signaling pathways related to receptor tyrosine kinases as a potential mechanism linking low levels of miR-223-5p with CCM worsening.
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