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Hypovitaminosis D in healthy schoolchildren
G El-Hajj Fuleihan1, M Nabulsi, M Choucair
1Department of Internal Medicine, Endocrine Division, Calcium Metabolism and Osteoporosis Program, American University of Beirut, Beirut, Lebanon. gf01@aub.edu.lb
Insights
Vitamin D insufficiency is common in schoolchildren, particularly girls and those with lower socioeconomic status (SES). This highlights a need to reconsider vitamin D supplementation for adolescent skeletal health.
Area of Science:
- Pediatrics
- Endocrinology
- Nutritional Science
Background:
- Vitamin D is crucial for skeletal growth, yet post-infancy supplementation guidelines are lacking.
- This study addresses vitamin D insufficiency in healthy children.
Purpose of the Study:
- To investigate the prevalence and predictors of vitamin D insufficiency in schoolchildren.
- To assess the relationship between vitamin D levels and bone metabolism markers.
Main Methods:
- A cross-sectional study of 356 schoolchildren (ages 10-16) in Beirut, Lebanon, across two seasons.
- Data collection included physical examinations, dietary questionnaires, and blood analysis for calciotropic hormones and bone turnover indices.
- Socioeconomic status (SES) and gender were key demographic factors considered.
Main Results:
- 52% of students exhibited vitamin D insufficiency, with higher rates in winter (65%) than summer (40%).
- Girls and students from lower SES backgrounds had significantly lower vitamin D levels (25-hydroxyvitamin D).
- Lower vitamin D levels correlated inversely with parathyroid hormone, suggesting potential impacts on bone metabolism.
Conclusions:
- Hypovitaminosis D is prevalent in schoolchildren, even in sunny climates, with girls and lower SES students at higher risk.
- Findings suggest insufficient vitamin D may negatively affect adolescent skeletal metabolism.
- Reconsideration of vitamin D supplementation strategies for high-risk adolescents is warranted to optimize bone health.
Background:
Vitamin D is essential for skeletal growth, but there are currently no guidelines for vitamin D supplementation after infancy. This study investigates vitamin D insufficiency in healthy children.
Methods:
Children ages 10 to 16 years from 3 private schools in Beirut, Lebanon, with differing socioeconomic status (SES) were studied: 169 in the spring of 1999 and 177 in the following fall; 83 students participated in both study phases. They had a physical examination, answered a dietary questionnaire, and blood was drawn for calciotropic hormones and indices of bone turnover.
Results:
Overall, 52% of the students were vitamin D-insufficient; the proportion of insufficiency was 65% in the winter and 40% at the end of the summer. During both seasons, girls had lower vitamin D levels than did boys; those who followed the dress code of covered head, arms, and legs had the lowest levels. Students in the mid-SES school had lower 25-hydroxyvitamin D (25-OHD) levels than did the ones from the high-SES school. After adjusting for confounders, gender, SES, and body mass index remained the significant predictors of vitamin D levels in both seasons (R(2) = 0.53, for spring and 0.28 for fall). There was a significant inverse correlation between 25-OHD levels and parathyroid hormone levels that was best fitted by a curvilinear model (R(2) = 0.19).
Conclusion:
Even in a sunny country, hypovitaminosis D is common in schoolchildren, more so in the winter. Girls, especially those with a lower SES, are at particular risk. The inverse changes in parathyroid hormone suggest that insufficient vitamin D levels may deleteriously affect skeletal metabolism in healthy adolescents. Vitamin D insufficiency may be prevalent in many other countries where supplementation of milk with vitamin D is not mandatory. Our results call to a reconsideration of vitamin D supplementation in high-risk adolescents to further optimize skeletal health. vitamin D insufficiency, bone metabolism, nutrition, gender, socioeconomic status.
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