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Enhanced stability and clinical absorption of a form of encapsulated vitamin A for food fortification

Food fortification is an effective strategy to address vitamin A (VitA) deficiency, which is the leading cause of childhood blindness and drastically increases mortality from severe infections. However, VitA food fortification remains challenging due to significant degradation during storage and coo...

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Autores principales: Tang, Wen, Zhuang, Jia, Anselmo, Aaron C., Xu, Xian, Duan, Aranda, Zhang, Ruojie, Sugarman, James L., Zeng, Yingying, Rosenberg, Evan, Graf, Tyler, McHugh, Kevin J., Tzeng, Stephany Y., Behrens, Adam M., Freed, Lisa E., Jing, Lihong, Jayawardena, Surangi, Weinstock, Shelley B., Le, Xiao, Sears, Christopher, Oxley, James, Daristotle, John L., Collins, Joe, Langer, Robert, Jaklenec, Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9907063/
https://www.ncbi.nlm.nih.gov/pubmed/36508653
http://dx.doi.org/10.1073/pnas.2211534119
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author Tang, Wen
Zhuang, Jia
Anselmo, Aaron C.
Xu, Xian
Duan, Aranda
Zhang, Ruojie
Sugarman, James L.
Zeng, Yingying
Rosenberg, Evan
Graf, Tyler
McHugh, Kevin J.
Tzeng, Stephany Y.
Behrens, Adam M.
Freed, Lisa E.
Jing, Lihong
Jayawardena, Surangi
Weinstock, Shelley B.
Le, Xiao
Sears, Christopher
Oxley, James
Daristotle, John L.
Collins, Joe
Langer, Robert
Jaklenec, Ana
author_facet Tang, Wen
Zhuang, Jia
Anselmo, Aaron C.
Xu, Xian
Duan, Aranda
Zhang, Ruojie
Sugarman, James L.
Zeng, Yingying
Rosenberg, Evan
Graf, Tyler
McHugh, Kevin J.
Tzeng, Stephany Y.
Behrens, Adam M.
Freed, Lisa E.
Jing, Lihong
Jayawardena, Surangi
Weinstock, Shelley B.
Le, Xiao
Sears, Christopher
Oxley, James
Daristotle, John L.
Collins, Joe
Langer, Robert
Jaklenec, Ana
author_sort Tang, Wen
collection PubMed
description Food fortification is an effective strategy to address vitamin A (VitA) deficiency, which is the leading cause of childhood blindness and drastically increases mortality from severe infections. However, VitA food fortification remains challenging due to significant degradation during storage and cooking. We utilized an FDA-approved, thermostable, and pH-responsive basic methacrylate copolymer (BMC) to encapsulate and stabilize VitA in microparticles (MPs). Encapsulation of VitA in VitA-BMC MPs greatly improved stability during simulated cooking conditions and long-term storage. VitA absorption was nine times greater from cooked MPs than from cooked free VitA in rats. In a randomized controlled cross-over study in healthy premenopausal women, VitA was readily released from MPs after consumption and had a similar absorption profile to free VitA. This VitA encapsulation technology will enable global food fortification strategies toward eliminating VitA deficiency.
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spelling pubmed-99070632023-02-08 Enhanced stability and clinical absorption of a form of encapsulated vitamin A for food fortification Tang, Wen Zhuang, Jia Anselmo, Aaron C. Xu, Xian Duan, Aranda Zhang, Ruojie Sugarman, James L. Zeng, Yingying Rosenberg, Evan Graf, Tyler McHugh, Kevin J. Tzeng, Stephany Y. Behrens, Adam M. Freed, Lisa E. Jing, Lihong Jayawardena, Surangi Weinstock, Shelley B. Le, Xiao Sears, Christopher Oxley, James Daristotle, John L. Collins, Joe Langer, Robert Jaklenec, Ana Proc Natl Acad Sci U S A Biological Sciences Food fortification is an effective strategy to address vitamin A (VitA) deficiency, which is the leading cause of childhood blindness and drastically increases mortality from severe infections. However, VitA food fortification remains challenging due to significant degradation during storage and cooking. We utilized an FDA-approved, thermostable, and pH-responsive basic methacrylate copolymer (BMC) to encapsulate and stabilize VitA in microparticles (MPs). Encapsulation of VitA in VitA-BMC MPs greatly improved stability during simulated cooking conditions and long-term storage. VitA absorption was nine times greater from cooked MPs than from cooked free VitA in rats. In a randomized controlled cross-over study in healthy premenopausal women, VitA was readily released from MPs after consumption and had a similar absorption profile to free VitA. This VitA encapsulation technology will enable global food fortification strategies toward eliminating VitA deficiency. National Academy of Sciences 2022-12-12 2022-12-20 /pmc/articles/PMC9907063/ /pubmed/36508653 http://dx.doi.org/10.1073/pnas.2211534119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Tang, Wen
Zhuang, Jia
Anselmo, Aaron C.
Xu, Xian
Duan, Aranda
Zhang, Ruojie
Sugarman, James L.
Zeng, Yingying
Rosenberg, Evan
Graf, Tyler
McHugh, Kevin J.
Tzeng, Stephany Y.
Behrens, Adam M.
Freed, Lisa E.
Jing, Lihong
Jayawardena, Surangi
Weinstock, Shelley B.
Le, Xiao
Sears, Christopher
Oxley, James
Daristotle, John L.
Collins, Joe
Langer, Robert
Jaklenec, Ana
Enhanced stability and clinical absorption of a form of encapsulated vitamin A for food fortification
title Enhanced stability and clinical absorption of a form of encapsulated vitamin A for food fortification
title_full Enhanced stability and clinical absorption of a form of encapsulated vitamin A for food fortification
title_fullStr Enhanced stability and clinical absorption of a form of encapsulated vitamin A for food fortification
title_full_unstemmed Enhanced stability and clinical absorption of a form of encapsulated vitamin A for food fortification
title_short Enhanced stability and clinical absorption of a form of encapsulated vitamin A for food fortification
title_sort enhanced stability and clinical absorption of a form of encapsulated vitamin a for food fortification
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9907063/
https://www.ncbi.nlm.nih.gov/pubmed/36508653
http://dx.doi.org/10.1073/pnas.2211534119
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