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MicroRNA expression aberration associated with bronchopulmonary dysplasia in preterm infants: a preliminary study
Yen-Tzu Wu1, Wei J Chen, Wu-Shiun Hsieh
1School and Graduate Institute of Physical Therapy, National Taiwan University Hospital College of Medicine, Taipei, Taiwan.
Insights
This study identified a four-microRNA signature in the blood of very low birth weight preterm infants that accurately distinguishes those with bronchopulmonary dysplasia (BPD). These microRNAs may serve as novel biomarkers for BPD development.
Area of Science:
- Neonatal Medicine
- Molecular Biology
- Biomarker Discovery
Background:
- Bronchopulmonary dysplasia (BPD) risk in very low birth weight (VLBW) infants is influenced by environmental and genetic factors.
- MicroRNAs (miRNAs), regulators of non-coding RNA, are increasingly investigated as potential biomarkers for BPD.
- Identifying specific miRNAs involved in BPD pathogenesis is crucial for early diagnosis and intervention.
Purpose of the Study:
- To identify circulating microRNAs (miRNAs) associated with the development of bronchopulmonary dysplasia (BPD) in very low birth weight (VLBW) preterm infants.
- To establish a miRNA signature that can differentiate VLBW infants with BPD from those without.
- To explore the potential roles of identified miRNAs in the biological pathways of BPD.
Main Methods:
- A case-control study involving 15 VLBW infants with BPD and 15 matched controls without BPD.
- Analysis of miRNA expression profiles (365 miRNAs) in peripheral blood at 36 weeks post-menstrual age and early postnatal life.
- Utilized database predictions to investigate the biological functions and pathways of miRNA target genes.
Main Results:
- A signature of four miRNAs (miR-152, miR-30a-3p, miR-133b, miR-7) accurately discriminated BPD cases from controls (accuracy=0.91).
- The miRNA signature's discriminative power was statistically significant (P < .001).
- Observed differential expression patterns: down-regulation of miR-152 and miR-30a-3p, and up-regulation of miR-133b and miR-7 in infants with BPD compared to controls.
Conclusions:
- This study presents the first identification of blood-based miRNAs associated with BPD in VLBW preterm infants.
- The identified four-miRNA signature shows promise as a non-invasive biomarker for BPD.
- These findings contribute to understanding the role of specific miRNAs in BPD pathogenesis.
Background:
Because environmental insults and genetic factors account for the variance in the risk of bronchopulmonary dysplasia (BPD) in very low birth weight (VLBW, birth weight < 1,500 g) preterm infants, the search for BPD biomarkers has begun to focus on the regulators of non-coding RNA such as microRNAs (miRNAs). Therefore, this study aimed to identify potential miRNAs involved in the pathogenesis of BPD in VLBW preterm infants.
Methods:
A case-control study (15 subjects with BPD and 15 sex-matched control subjects without BPD) was conducted to investigate the expression profiles of 365 miRNAs in the peripheral blood of VLBW preterm infants at 36 weeks post-menstrual age (called the older-age set). The expression levels of identified miRNAs were further evaluated in a subsample of blood collected during the first 2 weeks post-natal age (called the younger-age set). Possible biological functions and pathways implicated in the target genes regulated by the miRNAs were explored using database predictions.
Results:
A 4-miRNA signature (miR-152, miR-30a-3p, miR-133b, and miR-7) with aberrant expression levels at 36 weeks, derived from a supervised classification with internal cross-validation, discriminated the subjects with BPD from those without BPD with an accuracy of 0.91. The discriminative accuracy of the 4 miRNAs was supported by random permutations of either the disease status or the number of miRNAs selected (both P < .001). A down-regulation change of miR-152 and miR-30a-3p expression levels and an up-regulation change of miR-133b and miR-7 expression levels were found in the older-age set, compared to the younger-age set.
Conclusions:
This is the first study to identify blood-based miRNAs associated with BPD. The findings provide information regarding the roles of these biomarkers in the development of BPD in VLBW preterm infants.
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