Randomized controlled trial2016

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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