Effects of vitamin D2-fortified bread v. supplementation with vitamin D2 or D3 on serum 25-hydroxyvitamin D metabolites: an 8-week randomised-controlled trial in young adult Finnish women
Itkonen ST, Skaffari E, Saaristo P, Saarnio EM, Erkkola M, Jakobsen J, Cashman KD, Lamberg-Allardt C
The British journal of nutrition · 61 citations
How it was studied
- Design
- Randomized controlled trial (indexed by PubMed)
- Studied in
- People
- Main outcome
- Health markers and function
Who paid for it
- Funding
- Independent funding
- Government
- European Commission
- Grants
- European Commission (613977)
Based on 1 listed funder(s).
Publication
- Published
- 2016-02-11 · Br J Nutr · vol. 115 · issue 7 · pp. 1232–1239
- Publisher
- Cambridge University Press
- Cited
- 82 citations · more than 98% of similar papers · 8.1× the field average
- Impact
- Top 10% most cited in its field
- References
- 25 works
- Access
- Free to read
- Research areas
- Vitamin D Research Studies · Menstrual Health and Disorders · Endometriosis Research and Treatment
- Keywords
- Vitamin D and neurology, Vitamin, Chemistry, Food science, Animal science, Internal medicine, Medicine, Biochemistry, Biology
- MeSH
- humans, saccharomyces cerevisiae, calcium, cholecalciferol, ergocalciferols, parathyroid hormone, vitamin d, placebos, ultraviolet rays, seasons, biological availability, bread, dietary supplements, food, fortified, adult, finland, female, young adult
8 authors
From FI, DK, IE
- Suvi T. Itkonen · correspondingUniversity of Helsinki
- Essi SkaffariUniversity of Helsinki
- Pilvi SaaristoUniversity of Helsinki
- Elisa M. SaarnioUniversity of Helsinki
- Maijaliisa ErkkolaUniversity of Helsinki
- Jette JakobsenTechnical University of Denmark
Abstract
There is a need for food-based solutions for preventing vitamin D deficiency. Vitamin D3 (D3) is mainly used in fortified food products, although the production of vitamin D2 (D2) is more cost-effective, and thus may hold opportunities. We investigated the bioavailability of D2 from UV-irradiated yeast present in bread in an 8-week randomised-controlled trial in healthy 20-37-year-old women (n 33) in Helsinki (60°N) during winter (February-April) 2014. Four study groups were given different study products (placebo pill and regular bread=0 µg D2 or D3/d; D2 supplement and regular bread=25 µg D2/d; D3 supplement and regular bread=25 µg D3/d; and placebo pill and D2-biofortified bread=25 µg D2/d). Serum 25-hydroxyvitamin D2 (S-25(OH)D2) and serum 25-hydroxyvitamin D3 (S-25(OH)D3) concentrations were measured at baseline, midpoint and end point. The mean baseline total serum 25-hydroxyvitamin D (S-25(OH)D=S-25(OH)D2+S-25(OH)D3) concentration was 65·1 nmol/l. In repeated-measures ANCOVA (adjusted for baseline S-25(OH)D as total/D2/D3), D2-bread did not affect total S-25(OH)D (P=0·707) or S-25(OH)D3 (P=0·490), but increased S-25(OH)D2 compared with placebo (P<0·001). However, the D2 supplement was more effective than bread in increasing S-25(OH)D2 (P<0·001). Both D2 and D3 supplementation increased total S-25(OH)D compared with placebo (P=0·030 and P=0·001, respectively), but D2 supplementation resulted in lower S-25(OH)D3 (P<0·001). Thus, D2 from UV-irradiated yeast in bread was not bioavailable in humans. Our results support the evidence that D2 is less potent in increasing total S-25(OH)D concentrations than D3, also indicating a decrease in the percentage contribution of S-25(OH)D3 to the total vitamin D pool.
Abstract via Europe PMC. Copyright remains with the authors or publisher.
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