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Multifunctional Cosmetic Containing Blueberry and Tinosorb M®-Loaded Microparticles Improves Sunscreen Performance

Purpose: We aimed to evaluate the effect of blueberry extract and microparticles (MP) on sunscreen performance of multifunctional cosmetics. Octocrylene (OCT), benzophenone-3 (BENZ-3) and Tinosorb® M (MBBT) were employed as UV filters. Methods: An in-silico modeling was used to determine the UV filt...

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Autores principales: Schiavon, Daiana, Martini, Daniela Novello, Brocco, Gabriela, Santos, Júlia Scherer, Anzolin, Ana Paula, Rossato-Grando, Luciana Grazziotin, Omidian, Hamid, Bertol, Charise Dallazem
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tabriz University of Medical Sciences 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6664116/
https://www.ncbi.nlm.nih.gov/pubmed/31380249
http://dx.doi.org/10.15171/apb.2019.027
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author Schiavon, Daiana
Martini, Daniela Novello
Brocco, Gabriela
Santos, Júlia Scherer
Anzolin, Ana Paula
Rossato-Grando, Luciana Grazziotin
Omidian, Hamid
Bertol, Charise Dallazem
author_facet Schiavon, Daiana
Martini, Daniela Novello
Brocco, Gabriela
Santos, Júlia Scherer
Anzolin, Ana Paula
Rossato-Grando, Luciana Grazziotin
Omidian, Hamid
Bertol, Charise Dallazem
author_sort Schiavon, Daiana
collection PubMed
description Purpose: We aimed to evaluate the effect of blueberry extract and microparticles (MP) on sunscreen performance of multifunctional cosmetics. Octocrylene (OCT), benzophenone-3 (BENZ-3) and Tinosorb® M (MBBT) were employed as UV filters. Methods: An in-silico modeling was used to determine the UV filters concentrations to obtain high values of sunscreen protection factor (SPF) and UVA protection factor (UVA-PF). MBBT and blueberry-loaded microparticles (MP(MB+B)) and MBBT-loaded microparticles (MP(MBBT)) were prepared by spray-drying. OCT and BENZ-3 were added in the oil phase of cosmetics. Cosmetics A and B contained MP(MB+B) and MP(MBBT), respectively, and cosmetic C was prepared without MP. Characterization, physicochemical stability and in vitro SPF was performed. UV filters distribution in human stratum corneum (SC) for each cosmetic was performed. Anti-oxidant activity of blueberry extract was evaluated. Results: Sunscreen combination with the highest SPF was selected for formulations. Formulations A and B maintained their rheological behavior over time, unlike formulation C. In-vitro SPFs for formulations A, B and C were 51.0, 33.7 and 49.6, respectively. We also developed and validated a method for analysis of the UV filters by HPLC/ PDA suitable for the in-vivo assay. In Tape stripping test, MBBT showed SC distribution similar for all cosmetic formulations. OCT and BENZ-3 distribution to formulation A and C was also similar. Blueberry extract showed antioxidant capacity of 16.71 μg/mL equivalent to vitamin C. Conclusion: Cosmetics containing MPs presented better physical stability. Blueberry increased the photoprotective capacity of the formulations and added extra benefits due to its anti-oxidant and anti-aging properties.
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spelling pubmed-66641162019-08-02 Multifunctional Cosmetic Containing Blueberry and Tinosorb M®-Loaded Microparticles Improves Sunscreen Performance Schiavon, Daiana Martini, Daniela Novello Brocco, Gabriela Santos, Júlia Scherer Anzolin, Ana Paula Rossato-Grando, Luciana Grazziotin Omidian, Hamid Bertol, Charise Dallazem Adv Pharm Bull Research Article Purpose: We aimed to evaluate the effect of blueberry extract and microparticles (MP) on sunscreen performance of multifunctional cosmetics. Octocrylene (OCT), benzophenone-3 (BENZ-3) and Tinosorb® M (MBBT) were employed as UV filters. Methods: An in-silico modeling was used to determine the UV filters concentrations to obtain high values of sunscreen protection factor (SPF) and UVA protection factor (UVA-PF). MBBT and blueberry-loaded microparticles (MP(MB+B)) and MBBT-loaded microparticles (MP(MBBT)) were prepared by spray-drying. OCT and BENZ-3 were added in the oil phase of cosmetics. Cosmetics A and B contained MP(MB+B) and MP(MBBT), respectively, and cosmetic C was prepared without MP. Characterization, physicochemical stability and in vitro SPF was performed. UV filters distribution in human stratum corneum (SC) for each cosmetic was performed. Anti-oxidant activity of blueberry extract was evaluated. Results: Sunscreen combination with the highest SPF was selected for formulations. Formulations A and B maintained their rheological behavior over time, unlike formulation C. In-vitro SPFs for formulations A, B and C were 51.0, 33.7 and 49.6, respectively. We also developed and validated a method for analysis of the UV filters by HPLC/ PDA suitable for the in-vivo assay. In Tape stripping test, MBBT showed SC distribution similar for all cosmetic formulations. OCT and BENZ-3 distribution to formulation A and C was also similar. Blueberry extract showed antioxidant capacity of 16.71 μg/mL equivalent to vitamin C. Conclusion: Cosmetics containing MPs presented better physical stability. Blueberry increased the photoprotective capacity of the formulations and added extra benefits due to its anti-oxidant and anti-aging properties. Tabriz University of Medical Sciences 2019-06 2019-06-01 /pmc/articles/PMC6664116/ /pubmed/31380249 http://dx.doi.org/10.15171/apb.2019.027 Text en © 2019 The Author (s). http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution (CC BY), which permits unrestricted use, distribution, and reproduction in any medium, as long as the original authors and source are cited. No permission is required from the authors or the publishers.
spellingShingle Research Article
Schiavon, Daiana
Martini, Daniela Novello
Brocco, Gabriela
Santos, Júlia Scherer
Anzolin, Ana Paula
Rossato-Grando, Luciana Grazziotin
Omidian, Hamid
Bertol, Charise Dallazem
Multifunctional Cosmetic Containing Blueberry and Tinosorb M®-Loaded Microparticles Improves Sunscreen Performance
title Multifunctional Cosmetic Containing Blueberry and Tinosorb M®-Loaded Microparticles Improves Sunscreen Performance
title_full Multifunctional Cosmetic Containing Blueberry and Tinosorb M®-Loaded Microparticles Improves Sunscreen Performance
title_fullStr Multifunctional Cosmetic Containing Blueberry and Tinosorb M®-Loaded Microparticles Improves Sunscreen Performance
title_full_unstemmed Multifunctional Cosmetic Containing Blueberry and Tinosorb M®-Loaded Microparticles Improves Sunscreen Performance
title_short Multifunctional Cosmetic Containing Blueberry and Tinosorb M®-Loaded Microparticles Improves Sunscreen Performance
title_sort multifunctional cosmetic containing blueberry and tinosorb m®-loaded microparticles improves sunscreen performance
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6664116/
https://www.ncbi.nlm.nih.gov/pubmed/31380249
http://dx.doi.org/10.15171/apb.2019.027
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