scholarly journals Selective inhibition of the C5a chemotactic cofactor function of the Vitamin D binding protein by 1,25(OH)2 Vitamin D3

2006 ◽  
Vol 43 (8) ◽  
pp. 1109-1115 ◽  
Author(s):  
Anisha B. Shah ◽  
Stephen J. DiMartino ◽  
Glenda Trujillo ◽  
Richard R. Kew
2019 ◽  
Vol 104 (11) ◽  
pp. 5483-5498 ◽  
Author(s):  
Maria Enlund-Cerullo ◽  
Laura Koljonen ◽  
Elisa Holmlund-Suila ◽  
Helena Hauta-alus ◽  
Jenni Rosendahl ◽  
...  

Abstract Context Single nucleotide polymorphisms (SNPs) of the vitamin D binding protein encoding the GC (group component) gene affect 25-hydroxyvitamin D (25OHD) concentrations, but their influence on vitamin D status and response to vitamin D supplementation in infants is unknown. Objective To study GC genotype–related differences in 25OHD concentrations and the response to supplementation during a vitamin D intervention study in infants. Design In this randomized controlled trial, healthy term infants received vitamin D3 (10 or 30 μg/d) from 2 weeks to 24 months of age. GC SNPs rs2282679, rs4588, rs7041, and rs1155563 were genotyped. rs4588/7041 diplotype and haplotypes of rs2282679, rs4588, and rs7041 (Haplo3SNP) and of all four SNPs (Haplo4SNP) were determined. Main Outcome Measures 25OHD measured in cord blood at birth and at 12 and 24 months during intervention. Results A total of 913 infants were included. Minor allele homozygosity of all studied GC SNPs, their combined haplotypes, and rs4588/rs7041 diplotype 2/2 were associated with lower 25OHD concentrations at all time points in one or both intervention groups [analysis of covariance (ANCOVA) P < 0.043], with the exception of rs7041, which did not affect 25OHD at birth. In the high-dose supplementation group receiving 30 μg/d vitamin D3, but not in those receiving 10 µg/d, genotype of rs2282679, rs4588, and rs7041; diplotype; and Haplo3SNP significantly affected intervention response (repeated measurement ANCOVA Pinteraction < 0.019). Minor allele homozygotes had lower 25OHD concentrations and smaller increases in 25OHD throughout the intervention. Conclusions In infants, vitamin D binding protein genotype affects 25OHD concentration and efficiency of high-dose vitamin D3 supplementation.


2013 ◽  
Vol 12 (1) ◽  
Author(s):  
Hataikarn Nimitphong ◽  
Sunee Saetung ◽  
Suwannee Chanprasertyotin ◽  
La-or Chailurkit ◽  
Boonsong Ongphiphadhanakul

Author(s):  
Corrine Hanson ◽  
Elizabeth Lyden ◽  
Amy Nelson ◽  
Melissa Thoene ◽  
Julie Wagner ◽  
...  

AbstractThe objective of this study was to evaluate the relationship between 25(OH)D, Vitamin D Binding Protein (DBP), and free vitamin D in premature infants.Thirty-two infants <32 weeks’ gestation were randomized to two different levels of vitamin D3 supplementation (400 vs. 800 IU/day). 25(OH)D levels were measured by LC-MS/MS; DBP was measured by validated ELISA. Free vitamin D was calculated using molar ratios of 25(OH)D and DBP. The Wilcoxon signed rank test was used to compare DBP, free D and 25(OH)D levels; Spearman’s correlation coefficients were used to assess correlations.The mean gestational age at birth was 30.5 weeks; mean birth weight was 1405 g. Mean 25(OH)D levels at birth were 17.3 ng/mL; DBP levels were 297 mg/L, and estimated free vitamin D levels were 18.9. There was a statistically significant change in 25(OH)D levels after 8 weeks (24.6 vs. 39.1 ng/mL in the 400 vs. 800 group, respectively, p=0.02). DBP levels from birth to 8 weeks showed a statistically significant decrease (267 vs. 208, p=0.04). Estimated free 25(OH)D concentrations increased over the study period, from 18.9 at birth to 64.7 at 8 weeks of age (p=0.0001). Free vitamin D levels at birth were associated with global DEXA bone mineral content at discharge from the NICU (r=0.58, p=0.05).Supplementation with vitamin D3 increased the free portion of the vitamin D metabolite, providing increased bioavailable substrate. Improved free vitamin D levels may improve measurable outcomes such as bone mineral content and deserve further evaluation.


2019 ◽  
Author(s):  
Ankana Ganguly ◽  
Alexandra Shattock ◽  
Annsha Joseph ◽  
Janesh Gupta ◽  
Martin Hewison

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