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  • DKFZ Publication Database  (2)
  • GENOME-WIDE ASSOCIATION  (2)
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  • DKFZ Publication Database  (2)
  • 1
    Keywords: RISK ; REPRODUCIBILITY ; PROSTATE-CANCER ; FUTURE ; EPIC-GERMANY ; CARDIOVASCULAR-DISEASE ; GENOME-WIDE ASSOCIATION ; D-BINDING PROTEIN ; CIRCULATING VITAMIN-D ; CASE-COHORT
    Abstract: Circulating 25-hydroxyvitamin D (25(OH)D) has been associated with cardiovascular disease (CVD) risk in observational studies. Also, SNPs to explain variation in 25(OH)D have been identified by genome-wide association studies. Detection of direct associations between SNPs that significantly affect 25(OH)D and CVD risk would indicate a causal role of vitamin D, as reverse causation could be excluded and confounding could be better controlled. Thus, a combined analysis of candidate SNPs in relation to circulating 25(OH)D and CVD risk was carried out. A case-cohort study within the EPIC-Germany study was conducted comprising a randomly drawn subcohort of 2,132 subjects (57.9% women, mean age: 50.6 years) and incident cases of myocardial infarction (n=559) and stroke (n=471) that occurred during a mean follow-up duration of 7.6 years. 25(OH)D concentrations were measured by LC-MS/MS in baseline plasma samples. Additionally, eight candidate SNPs were assayed. Associations between 25(OH)D, SNPs and the risks of myocardial infarction and stroke were assessed by multivariable regression analyses. Mean 25(OH)D level was 47.2 nmol/L in the subcohort. Four SNPs were associated with 25(OH)D (p〈0.05). In subjects with 25(OH)D levels 〈25 nmol/L, the risks of CVD as composite endpoint (Hazard Ratio: 1.53, 95% confidence interval: 1.12-2.09), myocardial infarction, and stroke were significantly increased compared to subjects with levels 〉/=50 nmol/L, while no significant linear associations were observed. A SNP score was not related to the risks of total CVD (Hazard Ratio: 1.0, 95% confidence interval: 0.71-1.42), myocardial infarction, or stroke. The same was true concerning single SNPs. Given the lack of association between SNPs and the risks of stroke and myocardial infarction, the present findings do not point to a major causal role of vitamin D in the development of these diseases. However, a detection of modest associations between genetic markers and CVD risk in larger consortia cannot be ruled out.
    Type of Publication: Journal article published
    PubMed ID: 23935930
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  • 2
    Keywords: PROSTATE-CANCER ; POSTMENOPAUSAL WOMEN ; EPIC PROJECT ; RELATIVE VALIDITY ; GENOME-WIDE ASSOCIATION ; GERMAN PART ; D DEFICIENCY ; D SUPPLEMENTATION ; D INSUFFICIENCY ; 25-HYDROXYVITAMIN D LEVELS
    Abstract: Considerable variation in 25-hydroxyvitamin D (25(OH)D) in populations worldwide that seems to be independent of latitude has been reported. Therefore, we aimed to assess vitamin D status of a mid-aged German general population and to identify its dietary, lifestyle, anthropometric, and genetic determinants. 25(OH)D concentrations were measured by LC-MS/MS in plasma samples of a random subcohort of the German arm of the European Prospective Investigation into Cancer and Nutrition (EPIC) comprising 2,100 subjects aged 35-65 years. Associations between potential predictors and 25(OH)D were assessed by linear regression models. 32.8 % of the variance in 25(OH)D was explained by a multivariable regression model, with season being the by far strongest predictor (semi-partial R (2): 14.6 %). Sex, waist circumference, leisure time physical activity, smoking, polymorphisms in the GC, CYP2R1, and DHCR7 genes, supplement use, exogenous hormone use, alcohol consumption, egg consumption, and fish consumption were significantly associated with 25(OH)D concentrations as well. However, none of these factors explained 〉 2.3 % of the variance in 25(OH)D. Even with a comprehensive set of genetic, anthropometric, dietary, and lifestyle correlates, not more than 32.8 % of the variation in 25(OH)D could be explained in the EPIC-Germany study, implying that vitamin D prediction scores may not provide an appropriate proxy for measured 25(OH)D. Food intake was only a weak predictor of 25(OH)D concentrations, while a strong seasonal fluctuation in 25(OH)D was shown.
    Type of Publication: Journal article published
    PubMed ID: 24005870
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