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1.
Am J Clin Nutr ; 111(4): 757-768, 2020 04 01.
Article in English | MEDLINE | ID: mdl-31950134

ABSTRACT

BACKGROUND: Obese children are vulnerable to vitamin D deficiency and impaired cardiovascular health; vitamin D replenishment might improve their cardiovascular health. OBJECTIVES: The aims were to determine, in vitamin D-deficient overweight and obese children, whether supplementation with vitamin D3 1000 or 2000 IU/d is more effective than 600 IU/d in improving arterial endothelial function, arterial stiffness, central and systemic blood pressure (BP), insulin sensitivity (1/fasting insulin concentration), fasting glucose concentration, and lipid profile and to explore whether downregulation of adipocytokines and markers of systemic inflammation underlies vitamin D effects. METHODS: We conducted a randomized, double-masked, controlled clinical trial in 225 10- to 18-y-old eligible children. Change in endothelial function at 6 mo was the primary outcome. RESULTS: Dose-response increases in serum 25-hydroxyvitamin D concentrations were significant and tolerated without developing hypercalcemia. Changes at 3 and 6 mo in endothelial function, arterial stiffness, systemic-systolic BP, lipids, and inflammatory markers did not differ between children receiving 1000 or 2000 IU vitamin D and children receiving 600 IU. Some secondary outcomes differed between groups. Compared with the 600-IU group, central-systolic, central-diastolic, and systemic-diastolic BP was lower at 6 mo in the 1000-IU group [-2.66 (95% CI: -5.27, -0.046), -3.57 (-5.97, -1.17), and -3.28 (-5.55, -1.00) mm Hg, respectively]; insulin sensitivity increased at 3 and 6 mo and fasting glucose concentration declined at 6 mo (-2.67; 95% CI: -4.88, -0.46 mg/dL) in the 2000-IU group. CONCLUSIONS: Correction of vitamin D deficiency in overweight and obese children by vitamin D3 supplementation with 1000 or 2000 IU/d versus 600 IU/d did not affect measures of arterial endothelial function or stiffness, systemic inflammation, or lipid profile, but resulted in reductions in BP and fasting glucose concentration and in improvements in insulin sensitivity. Optimization of children's vitamin D status may improve their cardiovascular health. This trial was registered at clinicaltrials.gov as NCT01797302.


Subject(s)
Cholecalciferol/administration & dosage , Obesity/drug therapy , Overweight/drug therapy , Adipokines/metabolism , Adolescent , Blood Glucose , Blood Pressure , Cardiovascular System/metabolism , Cardiovascular System/physiopathology , Child , Dietary Supplements/analysis , Female , Heart/physiopathology , Humans , Insulin/metabolism , Insulin Resistance , Male , Obesity/genetics , Obesity/metabolism , Obesity/physiopathology , Overweight/genetics , Overweight/metabolism , Overweight/physiopathology , Vascular Stiffness
2.
Nutrients ; 11(9)2019 Aug 28.
Article in English | MEDLINE | ID: mdl-31466225

ABSTRACT

Associations between whole blood transcriptome and clinical phenotypes in vitamin D-deficient overweight and obese children can provide insight into the biological effects of vitamin D and obesity. We determined differentially expressed genes (DEGs) in relation to body mass index (BMI) in vitamin D-deficient black children with a BMI ≥ 85th percentile and ascertained the cardiometabolic phenotypes associated with the DEGs. We examined whole-blood transcriptome gene expression by RNA sequencing and cardiometabolic profiling in 41, 10- to 18-year-old children. We found 296 DEGs in association with BMI after adjusting for age, race, sex, and pubertal status. Cardiometabolic phenotypes associated with the BMI-related DEGs, after adjusting for age, sex, pubertal status, and %total body fat, were (i) flow-mediated dilation (marker of endothelial function), (ii) c-reactive protein (marker of inflammation), and (iii) leptin (adipocytokine). Canonical pathways of relevance for childhood obesity and its phenotypes that were significantly associated with the BMI-related DEGs affected immune cell function/inflammation, vascular health, metabolic function, and cell survival/death; several immune and inflammatory pathways overlapped across the three phenotypes. We have identified transcriptome-based biomarkers associated with BMI in vitamin D-deficient, overweight and obese black children. Modulating effects of vitamin D supplementation on these biomarkers and their related phenotypes need further exploration.


Subject(s)
Black or African American/genetics , Energy Metabolism/genetics , Pediatric Obesity/genetics , Transcriptome , Vitamin D Deficiency/genetics , Adiposity/genetics , Adolescent , Biomarkers/blood , Body Mass Index , Child , Cross-Sectional Studies , Female , Genetic Predisposition to Disease , Humans , Male , Pediatric Obesity/blood , Pediatric Obesity/diagnosis , Pediatric Obesity/ethnology , Pennsylvania/epidemiology , Phenotype , Randomized Controlled Trials as Topic , Risk Factors , Vitamin D Deficiency/blood , Vitamin D Deficiency/diagnosis , Vitamin D Deficiency/ethnology
3.
Pediatr Res ; 82(3): 444-451, 2017 Sep.
Article in English | MEDLINE | ID: mdl-28467404

ABSTRACT

BackgroundSkin color, a vitamin D status determinant, can be assessed subjectively by Fitzpatrick sun-reactive skin typing (FST) and objectively by melanin index (MI). FST was validated against MI for discerning vitamin D deficiency (serum 25-hydroxyvitamin D (25(OH)D) <20 ng/ml) in children.MethodsWe measured FST, MI, and serum 25(OH)D in healthy, 8- to 18-year-old children from one of two vitamin D trials. MI from forehead, hand, and upper arm split at the median of the more racially balanced study cohort and FST (I-III vs. IV-V) were used for discriminating vitamin D deficiency.ResultsA total of 296 participants (mean age, 12.3±2.3 years; black, 208; FST IV-V, 209; 25(OH)D <20 ng/ml, 159) were studied. MI and FST had a strong positive association. Serum 25(OH)D was negatively associated with MI and FST. Sensitivity, specificity, and predictive values were similar for discriminating vitamin D deficiency between higher vs. lower MI and between FST I-III vs. IV-V. ROC area under the curves for FST (0.59) and MI (forehead (0.63); hand (0.62); and arm (0.64)) were similar.ConclusionsFST is comparable to MI for discerning vitamin D deficiency and can be deemed as an inexpensive, useful surrogate measure of skin color in the context of vitamin D research.


Subject(s)
Melanins/metabolism , Skin/radiation effects , Sunlight , Vitamin D Deficiency/diagnosis , Adolescent , Child , Cohort Studies , Cross-Sectional Studies , Female , Humans , Male , Skin/metabolism , Skin Pigmentation , Vitamin D Deficiency/metabolism
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