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Obesity, oxidative DNA damage and vitamin D as predictors of genomic instability in children and adolescents
Moonisah Usman, Maria Woloshynowych, Jessica Carrilho Britto, Ivona Bilkevic, Bethany Glassar, Simon Chapman, Martha Ford‐Adams, Ashish Desai, Murray Bain, Ihab Tewfik, Emanuela V. Volpi
International Journal of Obesity · 2021 · ▲ 25 citations
Abstract
BACKGROUND/OBJECTIVES: Epidemiological evidence indicates obesity in childhood and adolescence to be an independent risk factor for cancer and premature mortality in adulthood. Pathological implications from excess adiposity may begin early in life. Obesity is concurrent with a state of chronic inflammation, a well-known aetiological factor for DNA damage. In addition, obesity has been associated with micro-nutritional deficiencies. Vitamin D has attracted attention for its anti-inflammatory properties and role in genomic integrity and stability. The aim of this study was to determine a novel approach for predicting genomic instability via the combined assessment of adiposity, DNA damage, systemic inflammation, and vitamin D status. SUBJECTS/METHODS: We carried out a cross-sectional study with 132 participants, aged 10-18, recruited from schools and paediatric obesity clinics in London. Anthropometric assessments included BMI Z-score, waist and hip circumference, and body fat percentage via bioelectrical impedance. Inflammation and vitamin D levels in saliva were assessed by enzyme-linked immunosorbent assay. Oxidative DNA damage was determined via quantification of 8-hydroxy-2'-deoxyguanosine in urine. Exfoliated cells from the oral cavity were scored for genomic instability via the buccal cytome assay. RESULTS: As expected, comparisons between participants with obesity and normal range BMI showed significant differences in anthropometric measures (p < 0.001). Significant differences were also observed in some measures of genomic instability (p < 0.001). When examining relationships between variables for all participants, markers of adiposity positively correlated with acquired oxidative DNA damage (p < 0.01) and genomic instability (p < 0.001), and negatively correlated with vitamin D (p < 0.01). Multiple regression analyses identified obesity (p < 0.001), vitamin D (p < 0.001), and oxidative DNA damage (p < 0.05) as the three significant predictors of genomic instability. CONCLUSIONS: Obesity, oxidative DNA damage, and vitamin D deficiency are significant predictors of genomic instability. Non-invasive biomonitoring and predictive modelling of genomic instability in young patients with obesity may contribute to the prioritisation and severity of clinical intervention measures.
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- 10.1038/s41366-021-00879-2
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- 2026-06-02 MST
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APA
Usman, M., Woloshynowych, M., Britto, J.C., Bilkevic, I., Glassar, B., Chapman, S., Ford‐Adams, M., Desai, A., Bain, M., Tewfik, I., & Volpi, E.V. (2021). Obesity, oxidative DNA damage and vitamin D as predictors of genomic instability in children and adolescents. <em>International Journal of Obesity</em>. https://doi.org/10.1038/s41366-021-00879-2
Vancouver
Usman M, Woloshynowych M, Britto JC, Bilkevic I, Glassar B, Chapman S, et al. Obesity, oxidative DNA damage and vitamin D as predictors of genomic instability in children and adolescents. International Journal of Obesity. 2021. doi:10.1038/s41366-021-00879-2.
BibTeX
@article{moonisah2021Obesit,
title = {Obesity, oxidative DNA damage and vitamin D as predictors of genomic instability in children and adolescents},
author = {Moonisah Usman and Maria Woloshynowych and Jessica Carrilho Britto and Ivona Bilkevic and Bethany Glassar and Simon Chapman and Martha Ford‐Adams and Ashish Desai and Murray Bain and Ihab Tewfik and Emanuela V. Volpi},
journal = {International Journal of Obesity},
year = {2021},
doi = {10.1038/s41366-021-00879-2},
}
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