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Updated: Nov 5, 2025

Tissue-specific miRNA Expression Profiling in Mouse Heart Sections Using In Situ Hybridization
Published on: September 15, 2018
Integrated analysis of miRNA-mRNA interaction in pediatric dilated cardiomyopathy
Frehiwet T Hailu1, Anis Karimpour-Fard2, Lee S Toni1
1Department of Medicine/Division of Cardiology, University of Colorado School of Medicine, Aurora, CO, USA.
Background:
MicroRNAs (miRNAs) are short single-stranded nucleotides that can regulate gene expression. Although we previously evaluated the expression of miRNAs in pediatric dilated cardiomyopathy (DCM) by miRNA array, pathway prediction based on changes in mRNA expression has not been previously analyzed in this population. The current study aimed to determine the regulation of miRNA expression by miRNA-sequencing (miRNA-seq) and, through miRNA-sequencing (mRNA-seq), analyze their putative target genes and altered pathways in pediatric DCM hearts.
Methods:
miRNA expression was determined by miRNA-seq [n = 10 non-failing (NF), n = 20 DCM]. Expression of a subset of miRNAs was evaluated in adult DCM patients (n = 11 NF, n = 13 DCM). miRNA-mRNA prediction analysis was performed using mRNA-seq data (n = 7 NF, n = 7 DCM) from matched samples.
Results:
Expression of 393 miRNAs was significantly different (p < 0.05) in pediatric DCM patients compared to NF controls. TargetScan-based miRNA-mRNA analysis revealed 808 significantly inversely expressed genes. Functional analysis suggests upregulated pathways related to the regulation of stem cell differentiation and cardiac muscle contraction, and downregulated pathways related to the regulation of protein phosphorylation, signal transduction, and cell communication.
Conclusions:
Our results demonstrated a unique age-dependent regulation of miRNAs and their putative target genes, which may contribute to distinctive phenotypic characteristics of DCM in children.
Impact:
This is the first study to compare miRNA expression in the heart of pediatric DCM patients to age-matched healthy controls by RNA sequencing. Expression of a subset of miRNAs is uniquely dysregulated in children. Using mRNA-seq and miRNA-seq from matched samples, target prediction was performed. This study underscores the importance of pediatric-focused studies.
Insights
Pediatric dilated cardiomyopathy (DCM) shows unique microRNA (miRNA) expression patterns. This study reveals age-dependent miRNA regulation and altered pathways in children with DCM, impacting cardiac function.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Genetics
Background:
- MicroRNAs (miRNAs) are key gene regulators.
- Pediatric dilated cardiomyopathy (DCM) involves complex genetic and molecular changes.
- Previous studies analyzed miRNA expression in pediatric DCM, but pathway analysis of miRNA-mRNA interactions was lacking.
Purpose of the Study:
- To investigate miRNA expression profiles in pediatric DCM using miRNA-sequencing (miRNA-seq).
- To identify target genes and altered biological pathways associated with miRNA dysregulation in pediatric DCM.
- To understand the role of age-dependent miRNA regulation in the distinct characteristics of pediatric DCM.
Main Methods:
- miRNA expression was profiled in pediatric DCM and non-failing (NF) hearts using miRNA-seq.
- miRNA-mRNA prediction analysis was conducted using matched mRNA-sequencing (mRNA-seq) data.
- Functional enrichment analysis was performed to identify significantly altered pathways.
Main Results:
- 393 miRNAs showed significantly different expression in pediatric DCM compared to NF controls.
- 808 genes were identified as significantly inversely expressed targets of these miRNAs.
- Upregulated pathways included stem cell differentiation and cardiac muscle contraction; downregulated pathways involved protein phosphorylation and cell communication.
Conclusions:
- Pediatric DCM exhibits unique, age-dependent miRNA and target gene dysregulation.
- Altered miRNA pathways may contribute to the specific phenotypic features of DCM in children.
- This study highlights the importance of pediatric-specific research in understanding DCM pathogenesis.
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MicroRNAs
MicroRNAs
Cardiomyopathy II: Dilated Cardiomyopathy

