Vitamin A Deficiency Clinical Trial
Official title:
Efficacy of β-carotene Biofortified Maize in Improving Vitamin A Status and Reducing the Prevalence of Vitamin A Deficiency Among Children in Rural Zambia
The purpose of this cluster-randomized trial is to examine whether daily consumption of β-carotene biofortified maize flour can reduce the prevalence of vitamin A deficiency and improve the vitamin A status and among 4-8 year old children in rural Zambia.
Status | Completed |
Enrollment | 1228 |
Est. completion date | June 2013 |
Est. primary completion date | March 2013 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | Both |
Age group | 4 Years to 8 Years |
Eligibility |
Inclusion Criteria: - Children 4-8 years of age |
Allocation: Randomized, Endpoint Classification: Efficacy Study, Intervention Model: Parallel Assignment, Masking: Open Label, Primary Purpose: Prevention
Country | Name | City | State |
---|---|---|---|
Zambia | JHU Office | Mkushi |
Lead Sponsor | Collaborator |
---|---|
Johns Hopkins Bloomberg School of Public Health | Canadian International Development Agency, HarvestPlus, National Food and Nutrition Commission, Zambia, Tropical Diseases Research Centre, Zambia, Zambia Agriculture Research Institute |
Zambia,
Davis C, Jing H, Howe JA, Rocheford T, Tanumihardjo SA. beta-Cryptoxanthin from supplements or carotenoid-enhanced maize maintains liver vitamin A in Mongolian gerbils ( Meriones unguiculatus) better than or equal to beta-carotene supplements. Br J Nutr. 2008 Oct;100(4):786-93. doi: 10.1017/S0007114508944123. Epub 2008 Mar 3. — View Citation
Davis CR, Howe JA, Rocheford TR, Tanumihardjo SA. The xanthophyll composition of biofortified maize (Zea mays Sp.) does not influence the bioefficacy of provitamin a carotenoids in Mongolian gerbils (Meriones unguiculatus). J Agric Food Chem. 2008 Aug 13;56(15):6745-50. doi: 10.1021/jf800816q. Epub 2008 Jul 11. — View Citation
Howe JA, Tanumihardjo SA. Carotenoid-biofortified maize maintains adequate vitamin a status in Mongolian gerbils. J Nutr. 2006 Oct;136(10):2562-7. — View Citation
Howe JA, Tanumihardjo SA. Evaluation of analytical methods for carotenoid extraction from biofortified maize (Zea mays sp.). J Agric Food Chem. 2006 Oct 18;54(21):7992-7. — View Citation
Muzhingi T, Gadaga TH, Siwela AH, Grusak MA, Russell RM, Tang G. Yellow maize with high ß-carotene is an effective source of vitamin A in healthy Zimbabwean men. Am J Clin Nutr. 2011 Aug;94(2):510-9. doi: 10.3945/ajcn.110.006486. Epub 2011 Jun 29. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Increased Serum Retinol Concentration | The investigators hypothesize a difference of 2.5 µg/dL or more in serum retinol among children receiving biofortified versus white maize flour-based meals. Serum retinol measures will be collected at baseline and at the end of 6 months and assessed by a High Performance Liquid Chromatography assay. | After 6 months of feeding | No |
Primary | Decreased Prevalence of Vitamin A deficiency | The investigators hypothesize a difference of 10% or more in the prevalence of vitamin A deficiency (i.e., serum retinol < 0.7 µmol/l) among children consuming biofortified versus white maize flour-based meals, assuming a baseline prevalence of 40%. | After 6 months of feeding | No |
Secondary | Improved Dark Adaptation | The investigators hypothesize a difference in pupillary response to a light stimulus, as detected by dark adaptometry, in children receiving biofortified versus white maize flour-based meals. | After 6 months of Feeding | No |
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