Vitamin D and oxidation-induced DNA damage: is there a connection?
Erica W Wang, Andrew R Collins1, Marco Y C Pang2
1Department of Nutrition, The University of Oslo, PO Box 1072, Blindern, 0316 Oslo, Norway.
Abstract:
Oxidation-induced damage to DNA can cause mutations, phenotypic changes and apoptosis. Agents that oppose such damage offer potential therapies for disease prevention. Vitamin D administration reportedly lowered DNA damage in type 2 diabetic mice, and higher DNA damage was reported in mononuclear cells of severely asthmatic patients who were vitamin D deficient. We hypothesised that lower vitamin D status associates with higher oxidation-induced DNA damage. Vitamin D deficiency (plasma 25(OH)D < 50 nmol/l) is highly prevalent worldwide, and association with DNA damage has high potential importance and impact in regard to the future health of vitamin D deficient young adults. In this study, oxidation-induced DNA damage in peripheral lymphocytes of 121 young (18-26 years) adults was measured using the formamidopyrimidine DNA glycosylase (FPG)-assisted comet assay. Plasma 25(OH)D was measured by liquid chromatography with tandem mass spectrometry (LC-MS/MS). Correlational analysis was performed between 25(OH)D and DNA damage. Differences in DNA damage across tertiles of 25(OH)D were explored using analysis of variance. DNA damage in those with 25(OH)D <50 nmol and ≥50 nmol/l was compared using the unpaired t-test. Mean (SD) DNA damage (as %DNA in comet tail) and plasma 25(OH)D were, respectively, 18.58 (3.39)% and 44.7 (13.03) nmol/l. Most (82/121; 68%) of the subjects were deficient in vitamin D (25(OH)D <50nmol/l). No significant correlation was seen between 25(OH)D and DNA damage (r = -0.0824; P > 0.05). No significant difference was seen across 25(OH)D tertiles: mean (SD) %DNA in comet tail/25(OH)D nmol/l values in lowest, middle and highest tertiles were, respectively, 18.64 (3.30)/31.6 (4.4), 18.90 (3.98)/42.9 (3.5), 18.19 (2.84)/59.9 (8.5), nor across the binary divide: 18.73 (3.63)% in <50nmol/l group vs. 18.27 (2.84)% in the ≥50 nmol/l group. No association between vitamin D and oxidation-induced DNA damage was observed, but vitamin D deficiency was highly prevalent in the young adults studied, and we cannot rule out an ameliorative effect of correction of vitamin D deficiency on DNA damage.
Insights
This study found no direct link between vitamin D levels and DNA damage in young adults. However, vitamin D deficiency was common, suggesting potential benefits from supplementation for overall health.
Area of Science:
- Biochemistry
- Genetics
- Nutritional Science
Background:
- Oxidative DNA damage is implicated in various diseases, and vitamin D has shown potential protective effects in some studies.
- Vitamin D deficiency is a global health concern, particularly among young adults.
- Previous research suggests a link between vitamin D deficiency and increased DNA damage in specific populations.
Purpose of the Study:
- To investigate the association between vitamin D status and oxidation-induced DNA damage in young adults.
- To determine if lower vitamin D levels correlate with higher levels of DNA damage in this demographic.
Main Methods:
- Oxidation-induced DNA damage was measured in lymphocytes using the formamidopyrimidine DNA glycosylase (FPG)-assisted comet assay.
- Plasma 25-hydroxyvitamin D (25(OH)D) levels were quantified using liquid chromatography with tandem mass spectrometry (LC-MS/MS).
- Statistical analyses included correlational analysis, ANOVA across tertiles, and t-tests comparing deficient (<50 nmol/l) and sufficient (≥50 nmol/l) groups.
Main Results:
- A high prevalence of vitamin D deficiency (68%) was observed in the study population (n=121, ages 18-26).
- No significant correlation was found between plasma 25(OH)D levels and DNA damage.
- No significant differences in DNA damage were observed across vitamin D tertiles or between vitamin D deficient and sufficient groups.
Conclusions:
- The study did not find an association between vitamin D status and oxidation-induced DNA damage in young adults.
- Vitamin D deficiency is highly prevalent in this age group, warranting further investigation into potential health impacts.
- While no direct link was found, the possibility of vitamin D supplementation ameliorating DNA damage cannot be entirely excluded.
Related Concept Videos
Mutations
Chromosomal Alterations Are Large-Scale Mutations
While point mutations are changes in a single nucleotide in...
Mutations
Nucleotide Excision Repair
Cells are regularly exposed to mutagens—factors in the environment that can damage DNA and generate mutations. UV radiation is one of the most common mutagens and is estimated to introduce a significant number of changes in DNA. These include bends or kinks in the structure, which can block DNA replication or transcription. If these errors are not fixed, the damage can cause mutations, which in turn can result in cancer or disease depending on which sequences are...
Nucleotide Excision Repair
Nucleotide Excision Repair
Overview of DNA Repair
Chemically...


