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Nanostructured lipid system as a strategy to improve the anti-Candida albicans activity of Astronium sp.

The genus Astronium (Anacardiaceae) includes species, such as Astronium fraxinifolium, Astronium graveolens, and Astronium urundeuva, which possess anti-inflammatory, anti-ulcerogenic, healing, and antimicrobial properties. Nanostructured lipid systems are able to potentiate the action of plant extr...

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Autores principales: Bonifácio, Bruna Vidal, Ramos, Matheus Aparecido dos Santos, da Silva, Patrícia Bento, Negri, Kamila Maria Silveira, de Oliveira Lopes, Érica, de Souza, Leonardo Perez, Vilegas, Wagner, Pavan, Fernando Rogério, Chorilli, Marlus, Bauab, Taís Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2015
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4536841/
https://www.ncbi.nlm.nih.gov/pubmed/26300640
http://dx.doi.org/10.2147/IJN.S79684
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author Bonifácio, Bruna Vidal
Ramos, Matheus Aparecido dos Santos
da Silva, Patrícia Bento
Negri, Kamila Maria Silveira
de Oliveira Lopes, Érica
de Souza, Leonardo Perez
Vilegas, Wagner
Pavan, Fernando Rogério
Chorilli, Marlus
Bauab, Taís Maria
author_facet Bonifácio, Bruna Vidal
Ramos, Matheus Aparecido dos Santos
da Silva, Patrícia Bento
Negri, Kamila Maria Silveira
de Oliveira Lopes, Érica
de Souza, Leonardo Perez
Vilegas, Wagner
Pavan, Fernando Rogério
Chorilli, Marlus
Bauab, Taís Maria
author_sort Bonifácio, Bruna Vidal
collection PubMed
description The genus Astronium (Anacardiaceae) includes species, such as Astronium fraxinifolium, Astronium graveolens, and Astronium urundeuva, which possess anti-inflammatory, anti-ulcerogenic, healing, and antimicrobial properties. Nanostructured lipid systems are able to potentiate the action of plant extracts, reducing the required dose and side effects and improving antimicrobial activity. This work aims to evaluate a nanostructured lipid system that was developed as a strategy to improve the anti-Candida albicans activity of hydroethanolic extracts of stems and leaves from Astronium sp. The antifungal activity against C. albicans (ATCC 18804) was evaluated in vitro by a microdilution technique. In addition to the in vitro assays, the Astronium sp. that showed the best antifungal activity and selectivity index was submitted to an in vivo assay using a model of vulvovaginal candidiasis infection. In these assays, the extracts were either used alone or were incorporated into the nanostructured lipid system (comprising 10% oil phase, 10% surfactant, and 80% aqueous phase). The results indicated a minimal inhibitory concentration of 125.00 µg/mL before incorporation into the nanostructured system; this activity was even more enhanced when this extract presented a minimal inhibitory concentration of 15.62 µg/mL after its incorporation. In vivo assay dates showed that the nanostructure-incorporated extract of A. urundeuva leaves was more effective than both the unincorporated extract and the antifungal positive control (amphotericin B). These results suggest that this nanostructured lipid system can be used in a strategy to improve the in vitro and in vivo anti-C. albicans activity of hydroethanolic extracts of Astronium sp.
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spelling pubmed-45368412015-08-21 Nanostructured lipid system as a strategy to improve the anti-Candida albicans activity of Astronium sp. Bonifácio, Bruna Vidal Ramos, Matheus Aparecido dos Santos da Silva, Patrícia Bento Negri, Kamila Maria Silveira de Oliveira Lopes, Érica de Souza, Leonardo Perez Vilegas, Wagner Pavan, Fernando Rogério Chorilli, Marlus Bauab, Taís Maria Int J Nanomedicine Original Research The genus Astronium (Anacardiaceae) includes species, such as Astronium fraxinifolium, Astronium graveolens, and Astronium urundeuva, which possess anti-inflammatory, anti-ulcerogenic, healing, and antimicrobial properties. Nanostructured lipid systems are able to potentiate the action of plant extracts, reducing the required dose and side effects and improving antimicrobial activity. This work aims to evaluate a nanostructured lipid system that was developed as a strategy to improve the anti-Candida albicans activity of hydroethanolic extracts of stems and leaves from Astronium sp. The antifungal activity against C. albicans (ATCC 18804) was evaluated in vitro by a microdilution technique. In addition to the in vitro assays, the Astronium sp. that showed the best antifungal activity and selectivity index was submitted to an in vivo assay using a model of vulvovaginal candidiasis infection. In these assays, the extracts were either used alone or were incorporated into the nanostructured lipid system (comprising 10% oil phase, 10% surfactant, and 80% aqueous phase). The results indicated a minimal inhibitory concentration of 125.00 µg/mL before incorporation into the nanostructured system; this activity was even more enhanced when this extract presented a minimal inhibitory concentration of 15.62 µg/mL after its incorporation. In vivo assay dates showed that the nanostructure-incorporated extract of A. urundeuva leaves was more effective than both the unincorporated extract and the antifungal positive control (amphotericin B). These results suggest that this nanostructured lipid system can be used in a strategy to improve the in vitro and in vivo anti-C. albicans activity of hydroethanolic extracts of Astronium sp. Dove Medical Press 2015-08-10 /pmc/articles/PMC4536841/ /pubmed/26300640 http://dx.doi.org/10.2147/IJN.S79684 Text en © 2015 Bonifácio et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Bonifácio, Bruna Vidal
Ramos, Matheus Aparecido dos Santos
da Silva, Patrícia Bento
Negri, Kamila Maria Silveira
de Oliveira Lopes, Érica
de Souza, Leonardo Perez
Vilegas, Wagner
Pavan, Fernando Rogério
Chorilli, Marlus
Bauab, Taís Maria
Nanostructured lipid system as a strategy to improve the anti-Candida albicans activity of Astronium sp.
title Nanostructured lipid system as a strategy to improve the anti-Candida albicans activity of Astronium sp.
title_full Nanostructured lipid system as a strategy to improve the anti-Candida albicans activity of Astronium sp.
title_fullStr Nanostructured lipid system as a strategy to improve the anti-Candida albicans activity of Astronium sp.
title_full_unstemmed Nanostructured lipid system as a strategy to improve the anti-Candida albicans activity of Astronium sp.
title_short Nanostructured lipid system as a strategy to improve the anti-Candida albicans activity of Astronium sp.
title_sort nanostructured lipid system as a strategy to improve the anti-candida albicans activity of astronium sp.
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4536841/
https://www.ncbi.nlm.nih.gov/pubmed/26300640
http://dx.doi.org/10.2147/IJN.S79684
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