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Updated: May 4, 2026

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Pediatric obesity and vitamin D deficiency: a proteomic approach identifies multimeric adiponectin as a key link
Gillian E Walker1, Roberta Ricotti2, Marta Roccio1
1Laboratory of Clinical Pediatrics, Department of Health Sciences, Università del Piemonte Orientale "Amedeo Avogadro", Novara, Italy.
Insights
Vitamin D deficiency is linked to lower adiponectin levels in obese children. Supplementation with vitamin D increased adiponectin, suggesting a role in pediatric obesity management.
Area of Science:
- Endocrinology
- Metabolic Disorders
- Nutritional Science
Background:
- Pediatric obesity is a growing health concern with complex underlying mechanisms.
- The relationship between vitamin D status and obesity-related metabolic disturbances is not fully understood.
- Identifying key molecular links can inform targeted interventions for obese children.
Purpose of the Study:
- To identify circulating molecules connecting vitamin D status to pediatric obesity using a proteomic approach.
- To investigate the role of adiponectin in vitamin D deficiency among obese children.
- To assess the impact of vitamin D supplementation on adiponectin levels and function.
Main Methods:
- Proteomic analysis (2D-electrophoresis) of plasma from vitamin D deficient (VDD) and normal vitamin D (NVD) obese children.
- Western Immunoblot (WIB) to confirm adiponectin levels and multimeric forms.
- In vitro studies to evaluate the direct effect of vitamin D on adiponectin synthesis.
Main Results:
- Proteomic analysis identified 53 differentially expressed spots between VDD and NVD groups, with adiponectin being a key molecule.
- Adiponectin and its high molecular weight (HMW) forms were significantly downregulated in VDD children compared to NVD children.
- Vitamin D3 supplementation in VDD children increased adiponectin and HMW adiponectin levels.
- In vitro studies demonstrated that 1α,25-(OH)2D3 directly upregulates adiponectin synthesis in adipocytes.
Conclusions:
- Multimeric adiponectin is a key plasma protein linking vitamin D deficiency to pediatric obesity.
- Vitamin D status influences adiponectin levels and potentially insulin sensitivity in obese children.
- Vitamin D supplementation may represent a therapeutic strategy to improve adiponectin levels in vitamin D deficient obese children.
Abstract:
Key circulating molecules that link vitamin D (VD) to pediatric obesity and its co-morbidities remain unclear. Using a proteomic approach, our objective was to identify key molecules in obese children dichotomized according to 25OH-vitamin D (25OHD) levels. A total of 42 obese children (M/F = 18/24) were divided according to their 25OHD3 levels into 25OHD3 deficient (VDD; n = 18; 25OHD<15 ng/ml) or normal subjects (NVD; n = 24; >30 ng/ml). Plasma proteomic analyses by two dimensional (2D)-electrophoresis were performed at baseline in all subjects. VDD subjects underwent a 12mo treatment with 3000 IU vitamin D3 once a week to confirm the proteomic analyses. The proteomic analyses identified 53 "spots" that differed between VDD and NVD (p<0.05), amongst which adiponectin was identified. Adiponectin was selected for confirmational studies due to its tight association with obesity and diabetes mellitus. Western Immunoblot (WIB) analyses of 2D-gels demonstrated a downregulation of adiponectin in VDD subjects, which was confirmed in the plasma from VDD with respect to NVD subjects (p<0.035) and increased following 12mo vitamin D3 supplementation in VDD subjects (p<0.02). High molecular weight (HMW) adiponectin, a surrogate indicator of insulin sensitivity, was significantly lower in VDD subjects (p<0.02) and improved with vitamin D3 supplementation (p<0.042). A direct effect in vitro of 1α,25-(OH)2D3 on adipocyte adiponectin synthesis was demonstrated, with adiponectin and its multimeric forms upregulated, even at low pharmacological doses (10(-9) M) of 1α,25-(OH)2D3. This upregulation was paralleled by the adiponectin interactive protein, DsbA-L, suggesting that the VD regulation of adiponectin involves post-transciptional events. Using a proteomic approach, multimeric adiponectin has been identified as a key plasma protein that links VDD to pediatric obesity.
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