Cardiorespiratory fitness in children with overweight/obesity: Insights into the molecular mechanisms.
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Date
2021-08-14
Authors
Plaza-Florido, Abel
Altmäe, Signe
Esteban, Francisco J
Löf, Marie
Radom-Aizik, Shlomit
Ortega, Francisco B
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Abstract
High cardiorespiratory fitness (CRF) levels reduce the risk of developing cardiovascular disease (CVD) during adulthood. However, little is known about the molecular mechanisms underlying the health benefits of high CRF levels at the early stage of life. This study aimed to analyze the whole-blood transcriptome profile of fit children with overweight/obesity (OW/OB) compared to unfit children with OW/OB. 27 children with OW/OB (10.14 ± 1.3 years, 59% boys) from the ActiveBrains project were evaluated. VO2 peak was assessed using a gas analyzer, and participants were categorized into fit or unfit according to the CVD risk-related cut-points. Whole-blood transcriptome profile (RNA sequencing) was analyzed. Differential gene expression analysis was performed using the limma R/Bioconductor software package (analyses adjusted by sex and maturational status), and pathways' enrichment analysis was performed with DAVID. In addition, in silico validation data mining was performed using the PHENOPEDIA database. 256 genes were differentially expressed in fit children with OW/OB compared to unfit children with OW/OB after adjusting by sex and maturational status (FDR The distinct pattern of whole-blood gene expression in fit children with OW/OB reveals genes and gene pathways that might play a role in reducing CVD risk factors later in life.
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MeSH Terms
Cardiorespiratory Fitness
Child
Cross-Sectional Studies
Female
Gene Expression
Humans
Male
Oxygen Consumption
Pediatric Obesity
Child
Cross-Sectional Studies
Female
Gene Expression
Humans
Male
Oxygen Consumption
Pediatric Obesity
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CIE Terms
Keywords
RNA-seq, aerobic fitness, childhood, gene expression, transcriptome