ArticleBiological trace element research2024
Associations Between Serum Selenium and Bone Mineral Density in 8-19-year-old children and adolescents: NHANES 2013-2018.
Article in Biological trace element research, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers, 1 of them a synthesis that pooled it.
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Who cites it
8 citing papers in PubMed, 1 synthesis or guideline pooled it.
- Dietary Copper Intake and Bone Health: A Systematic Review and Meta-Analysis of Observational Studies.Calcified tissue international · 2025Pooled it
- The role of B-vitamin intake, B-vitamin-rich dietary patterns, the B-vitamin deficiency index in bone mineral density among school-aged children.Pediatric research · 2026Article
- The association between dietary mineral intake and bone mineral density: a cross-sectional study.Journal of health, population, and nutrition · 2025Article
- The Role of Copper Intake in Bone Health: A Quantitative Analysis in Postmenopausal Spanish Women.European journal of investigation in health, psychology and education · 2025Article
- Dietary patterns and bone density among school-aged children: a cross-sectional study in China.European journal of nutrition · 2024Article
- Association between composite dietary antioxidant and bone mineral density in children and adolescents aged 8-19 years: findings from NHANES.Scientific reports · 2024Article
- The Association between Serum Copper and Bone Mineral Density among Adolescents Aged 12 to 19 in the United States.Nutrients · 2024Article
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Authors and funding
8 authors.
Funding
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Abstract
The peak bone mass (PBM) in puberty has been proven to be a critical determinant of osteoporosis and brittle fractures in the elderly. Selenium is an essential trace element that could influence bone metabolism in our bodies. However, no study has investigated the impact of selenium status on bone mineral density (BMD) among children and adolescents. This was a cross-section study from National Health and Nutrition Examination Survey (NHANES) in the USA involving participants aged 8-19 years. We conducted multiple linear regression models to assess the relationship between selenium status and BMD among children and adolescents, and then stratified analyses were performed according to genders and races. Smooth curve fits and two-piecewise linear regression models were conducted to explore their nonlinear relationship. A total of 4570 participants (2338 boys and 2232 girls) were included in the present study, with a mean age of 13.57 ± 3.41 years. In the multivariable adjustment model, serum selenium was positively associated with lumbar spine BMD (β = 0.021 95% CI: 0.008, 0.034, P = 0.001). The dose-response analyses indicated a non-linear inverted U-shaped relationship between serum selenium and lumbar spine BMD. Lower and higher selenium concentrations were related to decreased BMD, and the inflection point of serum selenium was 2.60 umol/L. The inverted U-shaped association was also observed in females (inflection point: 2.49 umol/L), males (inflection point: 2.65 umol/L), Non-Hispanic White (inflection point: 2.50 umol/L), Non-Hispanic Black (inflection point: 2.50 umol/L), and other races (Including multi-racial) (inflection point: 2.81 umol/L). Our study first shows a non-linear inversed U-shaped association between selenium status and BMD among children and adolescents. The proper selenium status will benefit bone health in children and adolescents. More research is still required to verify our findings and their potential mechanisms.
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