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Fasting and postprandial adiponectin alterations anticipate NEFA and TNF-α changes in prepubertal obese children
M Gil-Campos1, M C Ramírez Tortosa, C M Aguilera
1Unit of Pediatric Endocrinology, Reina Sofía University Hospital, Córdoba, Spain. mercedes_gil_campos@yahoo.es
Insights
In prepubertal children, obesity is linked to lower adiponectin levels, not increased non-esterified fatty acids or tumor necrosis factor-alpha. Adiponectin may signal early metabolic changes in childhood obesity.
Area of Science:
- Pediatric Endocrinology
- Metabolic Syndrome Research
- Adipokine Signaling Pathways
Background:
- Adipokine alterations may precede metabolic changes in obesity.
- Understanding early biomarkers in childhood obesity is crucial.
Purpose of the Study:
- To investigate plasma adiponectin, non-esterified fatty acids (NEFA), and tumor necrosis factor-alpha (TNF-α) in prepubertal obese vs. normal-weight children.
- To assess fasting and postprandial levels of these biomarkers.
Main Methods:
- Study included 54 prepubertal children (34 obese, 20 normal-weight).
- Participants consumed a standardized breakfast.
- Plasma levels of glucose, insulin, C-peptide, NEFA, adiponectin, and TNF-α were measured pre- and post-meal.
Main Results:
- Obese children had lower fasting NEFA (P=0.021) and significantly lower fasting and postprandial adiponectin (P<0.001) compared to normal-weight children.
- A trend suggested lower TNF-α in obese children (P=0.06).
- Adiponectin inversely correlated with insulin in obese children (r=-0.401, P=0.025).
Conclusions:
- Prepubertal obese children exhibit reduced adiponectin levels, with NEFA and TNF-α not yet elevated.
- Adiponectin serves as a potential early indicator of metabolic disturbances in childhood obesity.
Background And Aims:
It has been suggested that adipokine changes might precede changes in plasma non-esterified fatty acids and other obesity metabolic biomarkers. The aim of the present study was to evaluate changes in fasting and postprandial plasma levels of adiponectin, non-esterified fatty acids, and tumor necrosis factor-alpha in prepubertal obese children and age-matched normal-weight children.
Methods And Results:
Fifty-four children of prepubertal age (34 obese, comprising 23 males and 11 females, and 20 normal-weight comprising 11 males and 9 females) were studied. A standard 438 kcal breakfast was given to both groups. Baseline measurements included anthropometry and plasma lipids. The following parameters were determined in plasma before and after breakfast: glucose, insulin, and C-peptide at baseline and 2h and non-esterified fatty acids, adiponectin, and tumor necrosis factor-alpha at baseline and 1, 2, and 3h. Fasting plasma non-esterified fatty acid levels were lower in the obese versus normal-weight children (P=0.021). Both at baseline and postprandially, plasma adiponectin levels were lower in the obese versus normal-weight children (P<0.001). A trend was observed (P=0.06) that levels of tumor necrosis factor-alpha were lower in the obese versus normal-weight children. Adiponectin was inversely associated with insulin in the obese children after adjustment for BMI and sex (r=-0.401, P=0.025).
Conclusion:
At prepubertal age, obese children show lower fasting and postprandial plasma adiponectin levels in comparison to normal-weight children, whereas non-esterified fatty acids and tumor necrosis factor-alpha were not yet increased. Therefore, adiponectin appears to be a good marker of early metabolic alterations associated with childhood obesity.
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