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Hybrid Nanobeads for Oral Indomethacin Delivery

The oral administration of the anti-inflammatory indomethacin (INDO) causes severe gastrointestinal side effects, which are intensified in chronic inflammatory conditions when a continuous treatment is mandatory. The development of hybrid delivery systems associates the benefits of different (nano)...

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Autores principales: Bonetti, Flávia Monique Rocha, de Paula, Eneida, Fonseca, Belchiolina Beatriz, da Silva, Gabriela Ribeiro, da Silva, Leandro Santana Soares, de Moura, Ludmilla David, Breitkreitz, Márcia Cristina, Rodrigues da Silva, Gustavo Henrique, de Morais Ribeiro, Lígia Nunes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8954626/
https://www.ncbi.nlm.nih.gov/pubmed/35335959
http://dx.doi.org/10.3390/pharmaceutics14030583
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author Bonetti, Flávia Monique Rocha
de Paula, Eneida
Fonseca, Belchiolina Beatriz
da Silva, Gabriela Ribeiro
da Silva, Leandro Santana Soares
de Moura, Ludmilla David
Breitkreitz, Márcia Cristina
Rodrigues da Silva, Gustavo Henrique
de Morais Ribeiro, Lígia Nunes
author_facet Bonetti, Flávia Monique Rocha
de Paula, Eneida
Fonseca, Belchiolina Beatriz
da Silva, Gabriela Ribeiro
da Silva, Leandro Santana Soares
de Moura, Ludmilla David
Breitkreitz, Márcia Cristina
Rodrigues da Silva, Gustavo Henrique
de Morais Ribeiro, Lígia Nunes
author_sort Bonetti, Flávia Monique Rocha
collection PubMed
description The oral administration of the anti-inflammatory indomethacin (INDO) causes severe gastrointestinal side effects, which are intensified in chronic inflammatory conditions when a continuous treatment is mandatory. The development of hybrid delivery systems associates the benefits of different (nano) carriers in a single system, designed to improve the efficacy and/or minimize the toxicity of drugs. This work describes the preparation of hybrid nanobeads composed of nanostructured lipid carriers (NLC) loading INDO (2%; w/v) and chitosan, coated by xanthan. NLC formulations were monitored in a long-term stability study (25 °C). After one year, they showed suitable physicochemical properties (size < 250 nm, polydispersity < 0.2, zeta potential of −30 mV and spherical morphology) and an INDO encapsulation efficiency of 99%. The hybrid (lipid-biopolymers) nanobeads exhibited excellent compatibility between the biomaterials, as revealed by structural and thermodynamic properties, monodisperse size distribution, desirable in vitro water uptake and prolonged in vitro INDO release (26 h). The in vivo safety of hybrid nanobeads was confirmed by the chicken embryo (CE) toxicity test, considering the embryos viability, weights of CE and annexes and changes in the biochemical markers. The results point out a safe gastro-resistant pharmaceutical form for further efficacy assays.
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spelling pubmed-89546262022-03-26 Hybrid Nanobeads for Oral Indomethacin Delivery Bonetti, Flávia Monique Rocha de Paula, Eneida Fonseca, Belchiolina Beatriz da Silva, Gabriela Ribeiro da Silva, Leandro Santana Soares de Moura, Ludmilla David Breitkreitz, Márcia Cristina Rodrigues da Silva, Gustavo Henrique de Morais Ribeiro, Lígia Nunes Pharmaceutics Article The oral administration of the anti-inflammatory indomethacin (INDO) causes severe gastrointestinal side effects, which are intensified in chronic inflammatory conditions when a continuous treatment is mandatory. The development of hybrid delivery systems associates the benefits of different (nano) carriers in a single system, designed to improve the efficacy and/or minimize the toxicity of drugs. This work describes the preparation of hybrid nanobeads composed of nanostructured lipid carriers (NLC) loading INDO (2%; w/v) and chitosan, coated by xanthan. NLC formulations were monitored in a long-term stability study (25 °C). After one year, they showed suitable physicochemical properties (size < 250 nm, polydispersity < 0.2, zeta potential of −30 mV and spherical morphology) and an INDO encapsulation efficiency of 99%. The hybrid (lipid-biopolymers) nanobeads exhibited excellent compatibility between the biomaterials, as revealed by structural and thermodynamic properties, monodisperse size distribution, desirable in vitro water uptake and prolonged in vitro INDO release (26 h). The in vivo safety of hybrid nanobeads was confirmed by the chicken embryo (CE) toxicity test, considering the embryos viability, weights of CE and annexes and changes in the biochemical markers. The results point out a safe gastro-resistant pharmaceutical form for further efficacy assays. MDPI 2022-03-08 /pmc/articles/PMC8954626/ /pubmed/35335959 http://dx.doi.org/10.3390/pharmaceutics14030583 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bonetti, Flávia Monique Rocha
de Paula, Eneida
Fonseca, Belchiolina Beatriz
da Silva, Gabriela Ribeiro
da Silva, Leandro Santana Soares
de Moura, Ludmilla David
Breitkreitz, Márcia Cristina
Rodrigues da Silva, Gustavo Henrique
de Morais Ribeiro, Lígia Nunes
Hybrid Nanobeads for Oral Indomethacin Delivery
title Hybrid Nanobeads for Oral Indomethacin Delivery
title_full Hybrid Nanobeads for Oral Indomethacin Delivery
title_fullStr Hybrid Nanobeads for Oral Indomethacin Delivery
title_full_unstemmed Hybrid Nanobeads for Oral Indomethacin Delivery
title_short Hybrid Nanobeads for Oral Indomethacin Delivery
title_sort hybrid nanobeads for oral indomethacin delivery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8954626/
https://www.ncbi.nlm.nih.gov/pubmed/35335959
http://dx.doi.org/10.3390/pharmaceutics14030583
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