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Updated: Jun 28, 2025

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Obesity and dyslipidemia in early life: Impact on cardiometabolic risk
Aleksandra Zeljkovic1, Jelena Vekic1, Aleksandra Stefanovic1
1Department of Medical Biochemistry, University of Belgrade-Faculty of Pharmacy, Belgrade, Serbia.
Insights
Childhood obesity stems from early life epigenetic changes, particularly maternal metabolism alterations. This review explores how intrauterine and postnatal exposures impact obesity and cardiometabolic risks in children.
Area of Science:
- Pediatrics
- Endocrinology
- Epigenetics
Background:
- Childhood obesity is a growing global health crisis.
- It is linked to serious cardiometabolic issues like insulin resistance, diabetes, and cardiovascular disease.
- Epigenetic modifications during prenatal and perinatal periods are increasingly implicated.
Purpose of the Study:
- To review the link between intrauterine/postnatal exposures and childhood obesity.
- To examine the role of maternal dyslipidemia in epigenetic changes.
- To analyze novel lipid biomarkers for cardiometabolic risk in obese youth.
Main Methods:
- Literature review of recent findings.
- Focus on epigenetic mechanisms.
- Analysis of lipid biomarkers and their clinical utility.
Main Results:
- Early life metabolic programming, influenced by maternal factors, affects offspring's long-term health.
- Maternal dyslipidemia is a key driver of adverse epigenetic modifications.
- New lipid biomarkers show potential for predicting cardiometabolic risk.
Conclusions:
- Interventions targeting maternal metabolism and early life exposures are crucial for preventing childhood obesity.
- Understanding epigenetic influences is key to addressing associated cardiometabolic complications.
- Further research on lipid biomarkers can improve risk assessment and clinical management.
Abstract:
Childhood obesity with its growing prevalence worldwide presents one of the most important health challenges nowadays. Multiple mechanisms are involved in the development of this condition, as well as in its associations with various cardiometabolic complications, such as insulin resistance, diabetes, metabolic dysfunction-associated steatotic liver disease and cardiovascular diseases. Recent findings suggest that childhood obesity and associated dyslipidemia at least partly originate from epigenetic modifications that take place in the earliest periods of life, namely prenatal and perinatal periods. Hence, alterations of maternal metabolism could be fundamentally responsible for fetal and neonatal metabolic programming and consequently, for metabolic health of offspring in later life. In this paper, we will review recent findings on the associations among intrauterine and early postnatal exposure to undesirable modulators of metabolism, development of childhood obesity and later cardiometabolic complications. Special attention will be given to maternal dyslipidemia as a driven force for undesirable epigenetic modulations in offspring. In addition, newly proposed lipid biomarkers of increased cardiometabolic risk in obese children and adolescents will be analyzed, with respect to their predictive potential and clinical applicability.
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