Targeted proteomics involved in cardiovascular health and heart rate variability in children with overweight/obesity
Plaza‐Florido, A., Olvera‐Rojas, M., Alcantara, J. M. A., Radom‐Aizik, S., & Ortega, F. B. (2024). Targeted proteomics involved in cardiovascular health and heart rate variability in children with overweight/obesity. American Journal of Human Biology, Early online. https://doi.org/10.1002/ajhb.24113
Published in
American Journal of Human BiologyAuthors
Date
2024Copyright
© 2024 the Authors
Background
Children with overweight/obesity often exhibit alterations in their plasma protein profiles and reduced heart rate variability (HRV). Plasma proteomics is at the forefront of identifying biomarkers for various clinical conditions. We aimed to examine the association between plasma-targeted proteomics involved in cardiovascular health and resting vagal-related HRV parameters in children with overweight/obesity.
Methods
Forty-four children with overweight/obesity (10.2 ± 1.1 years old; 52% boys) participated in the study. Olink's technology was used to quantify 92 proteins involved in cardiovascular health. HRV was measured using a heart rate monitor (Polar RS800CX). Four resting vagal-related HRV parameters were derived in time- and frequency-domain.
Results
Eight proteins (KIM1, IgG Fc receptor II-b, IDUA, BOC, IL1RL2, TNFRSF11A, VSIG2, and TF) were associated with at least one out of the four vagal-related HRV parameters (β values ranging from −0.188 to 0.288; all p < .05), while KIM1, IDUA, and BOC associated with ≥ three vagal-related HRV parameters. Multiple hypothesis testing corrections did not reach statistical significance (false discovery rate [FDR >0.05]).
Conclusion
Plasma-targeted proteomics suggested novel biomarkers for resting vagal-related HRV parameters in children with overweight/obesity. Future studies using larger cohorts and longitudinal designs should confirm our findings and their potential clinical implications.
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Publisher
WileyISSN Search the Publication Forum
1042-0533Keywords
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https://converis.jyu.fi/converis/portal/detail/Publication/220713810
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Additional information about funding
The project was mainly funded by the Spanish Ministry of Economy and Competitiveness (Reference DEP2013-47540, DEP2016-79512-R, and DEP2017-91544-EXP) and by the Andalusian Operational Programme supported with European Regional Development Funds (ERDF in English, FEDER in Spanish, projects ref: B-CTS-355-UGR18 and A-CTS-614-UGR20) and Junta de Andalucia (P20_00158). A.P.F. is supported by PERC Systems Biology Fund. MO-R. is supported by the Spanish Ministry of Science, Innovation and Universities (FPU 22/02476). Additional support was obtained from the Unit of Excellence on EXERNET Research Network on Exercise and Health (DEP2005- 00046/ACTI; 09/UPB/19; 45/UPB/20; 27/UPB/21). This study has been partially funded by the University of Granada, Plan Propio de Investigación 2016, Excellence actions: Units of Excellence; Unit of Excellence on Exercise and Health (UCEES), and by the Junta de Andalucía, Consejería de Conocimiento, Investigación y Universidades and European Regional Development Fund (ERDF), ref. SOMM17/6107/UGR. J.M.A.A. is supported by the grant FJC2020-044453-I funded by MCIN/AEI/10.13039/501100011033 and by “European Union NextGenerationEU/PRTR” and Universidad de Granada/CBUA. ...License
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