β-Cryptoxanthin and zeaxanthin are highly bioavailable from whole-grain and refined biofortified orange maize in humans with optimal vitamin A status: a randomized, crossover, placebo-controlled trial
| Autores principales: | , , , , , , |
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| Formato: | Journal Article |
| Lenguaje: | Inglés |
| Publicado: |
Elsevier
2018
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| Materias: | |
| Acceso en línea: | https://hdl.handle.net/10568/171154 |
| _version_ | 1855515836107718656 |
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| author | Titcomb, Tyler J. Sheftel, Jesse Sowa, Margaret Gannon, Bryan Davis, Christopher R. Palacios-Rojas, Natalia Tanumihardjo, Sherry A. |
| author_browse | Davis, Christopher R. Gannon, Bryan Palacios-Rojas, Natalia Sheftel, Jesse Sowa, Margaret Tanumihardjo, Sherry A. Titcomb, Tyler J. |
| author_facet | Titcomb, Tyler J. Sheftel, Jesse Sowa, Margaret Gannon, Bryan Davis, Christopher R. Palacios-Rojas, Natalia Tanumihardjo, Sherry A. |
| author_sort | Titcomb, Tyler J. |
| collection | Repository of Agricultural Research Outputs (CGSpace) |
| format | Journal Article |
| id | CGSpace171154 |
| institution | CGIAR Consortium |
| language | Inglés |
| publishDate | 2018 |
| publishDateRange | 2018 |
| publishDateSort | 2018 |
| publisher | Elsevier |
| publisherStr | Elsevier |
| record_format | dspace |
| spelling | CGSpace1711542025-12-08T10:06:44Z β-Cryptoxanthin and zeaxanthin are highly bioavailable from whole-grain and refined biofortified orange maize in humans with optimal vitamin A status: a randomized, crossover, placebo-controlled trial Titcomb, Tyler J. Sheftel, Jesse Sowa, Margaret Gannon, Bryan Davis, Christopher R. Palacios-Rojas, Natalia Tanumihardjo, Sherry A. carotenoids maize retinol vitamin deficiencies biofortification abundance 2018-10 2025-01-29T12:57:47Z 2025-01-29T12:57:47Z Journal Article https://hdl.handle.net/10568/171154 en Limited Access Elsevier Titcomb, Tyler J; Sheftel, Jesse; Sowa, Margaret; Gannon, Bryan M; Davis, Christopher R; Palacios-Rojas, Natalia; and Tanumihardjo, Sherry A. 2018. β-Cryptoxanthin and zeaxanthin are highly bioavailable from whole-grain and refined biofortified orange maize in humans with optimal vitamin A status: a randomized, crossover, placebo-controlled trial. The American Journal of Clinical Nutrition 108(4): 793-802. https://doi.org/10.1093/ajcn/nqy134 |
| spellingShingle | carotenoids maize retinol vitamin deficiencies biofortification abundance Titcomb, Tyler J. Sheftel, Jesse Sowa, Margaret Gannon, Bryan Davis, Christopher R. Palacios-Rojas, Natalia Tanumihardjo, Sherry A. β-Cryptoxanthin and zeaxanthin are highly bioavailable from whole-grain and refined biofortified orange maize in humans with optimal vitamin A status: a randomized, crossover, placebo-controlled trial |
| title | β-Cryptoxanthin and zeaxanthin are highly bioavailable from whole-grain and refined biofortified orange maize in humans with optimal vitamin A status: a randomized, crossover, placebo-controlled trial |
| title_full | β-Cryptoxanthin and zeaxanthin are highly bioavailable from whole-grain and refined biofortified orange maize in humans with optimal vitamin A status: a randomized, crossover, placebo-controlled trial |
| title_fullStr | β-Cryptoxanthin and zeaxanthin are highly bioavailable from whole-grain and refined biofortified orange maize in humans with optimal vitamin A status: a randomized, crossover, placebo-controlled trial |
| title_full_unstemmed | β-Cryptoxanthin and zeaxanthin are highly bioavailable from whole-grain and refined biofortified orange maize in humans with optimal vitamin A status: a randomized, crossover, placebo-controlled trial |
| title_short | β-Cryptoxanthin and zeaxanthin are highly bioavailable from whole-grain and refined biofortified orange maize in humans with optimal vitamin A status: a randomized, crossover, placebo-controlled trial |
| title_sort | β cryptoxanthin and zeaxanthin are highly bioavailable from whole grain and refined biofortified orange maize in humans with optimal vitamin a status a randomized crossover placebo controlled trial |
| topic | carotenoids maize retinol vitamin deficiencies biofortification abundance |
| url | https://hdl.handle.net/10568/171154 |
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