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Published on: February 17, 2023
A matter of fat: insulin resistance and oxidative stress
Pilar Codoñer-Franch1, Almudena Navarro-Ruiz, María Fernández-Ferri
1Department of Pediatrics, Dr Peset University Hospital, Valencia, Spain. pilar.codoner@uv.es
Insights
Obese children with higher insulin resistance show increased oxidative stress. This suggests oxidative stress may worsen with insulin resistance severity, potentially leading to health complications.
Area of Science:
- Pediatric Endocrinology
- Metabolic Syndrome Research
- Oxidative Stress Studies
Background:
- Obesity is a significant risk factor for insulin resistance (IR) and type 2 diabetes mellitus.
- Early-stage obesity-associated oxidative stress may contribute to the development of comorbid conditions.
Purpose of the Study:
- To investigate the correlation between oxidative stress biomarkers and the degree of insulin resistance in obese children.
- To assess how markers of oxidative stress differ based on insulin resistance severity in pediatric obesity.
Main Methods:
- Forty obese children (BMI Z-score ≥ 2) were stratified by insulin resistance levels using Homeostasis Model Assessment of IR (HOMA-IR).
- Evaluated anthropometric (body fat percentage) and biochemical markers, including malondialdehyde (MDA) and carbonyl groups (CG) as oxidative stress indicators.
- Statistical analyses adjusted for gender and Tanner stage.
Main Results:
- Higher HOMA-IR correlated with increased body fat percentage and waist circumference, but not BMI Z-score.
- Elevated lipid (MDA) and protein (CG) oxidative stress markers were observed in children with higher HOMA-IR.
- Malondialdehyde (MDA) levels significantly increased with worsening insulin resistance (r = 0.50, p = 0.002), confirmed by multivariate analysis (r2 = 0.22, p = 0.002).
Conclusions:
- Oxidative stress is elevated in obese children, escalating with the severity of insulin resistance.
- These findings highlight a potential link between increased oxidative stress and the progression of comorbidities in pediatric obesity.
Background:
Obesity is linked to insulin resistance (IR), which can lead to type 2 diabetes mellitus. Oxidative stress present in early obesity may favor the progression to comorbid conditions.
Objective:
To examine the relationship between oxidative stress biomarkers and the severity of IR in a group of obese children.
Methods:
Forty obese children with a body mass index (BMI) Z-score ≥ 2 were divided into two groups using the median obtained for the homeostasis model assessment of IR (HOMA-IR). Anthropometric parameters (including body fat composition by bioelectrical impedance) and biochemical parameters were assessed. The following biomarkers of oxidative stress were measured: malondialdehyde (MDA), carbonyl groups (CG), reduced glutathione, oxidized low-density lipoprotein, and vitamin E. Comparisons were adjusted for gender and Tanner stage.
Results:
Children with high values of HOMA-IR were more likely to have high body fat percentage and waist circumferences. However, the BMI Z-score did not correlate to the level of IR. Children with higher values of HOMA-IR presented increased levels of markers of oxidative stress in lipids (MDA, p = 0.005) and proteins (CG, p = 0.015). Moreover, MDA increased with increasing levels of HOMA-IR (r = 0.50, p = 0.002), suggesting that lipoperoxidation increases as IR worsens. In a multivariate regression model, only HOMA-IR was predictive of MDA values, irrespective of adiposity parameters and other metabolic risk factors (r2 = 0.22, p = 0.002).
Conclusions:
Oxidative stress increases in obese children according to the severity of IR, which could be linked to the development of comorbidities.
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