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Ciprofibrate-Loaded Nanoparticles Prepared by Nanoprecipitation: Synthesis, Characterization, and Drug Release

Ciprofibrate (CIP) is a highly lipophilic and poorly water-soluble drug, typically used for dyslipidemia treatment. Although it is already commercialized in capsules, no previous studies report its solid-state structure; thus, information about the correlation with its physicochemical properties is...

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Autores principales: Corrêa, Raissa Lohanna Gomes Quintino, dos Santos, Renan, Albuquerque, Lindomar José Calumby, de Araujo, Gabriel Lima Barros, Edwards-Gayle, Charlotte Jennifer Chante, Ferreira, Fabio Furlan, Costa, Fanny Nascimento
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8468397/
https://www.ncbi.nlm.nih.gov/pubmed/34578074
http://dx.doi.org/10.3390/polym13183158
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author Corrêa, Raissa Lohanna Gomes Quintino
dos Santos, Renan
Albuquerque, Lindomar José Calumby
de Araujo, Gabriel Lima Barros
Edwards-Gayle, Charlotte Jennifer Chante
Ferreira, Fabio Furlan
Costa, Fanny Nascimento
author_facet Corrêa, Raissa Lohanna Gomes Quintino
dos Santos, Renan
Albuquerque, Lindomar José Calumby
de Araujo, Gabriel Lima Barros
Edwards-Gayle, Charlotte Jennifer Chante
Ferreira, Fabio Furlan
Costa, Fanny Nascimento
author_sort Corrêa, Raissa Lohanna Gomes Quintino
collection PubMed
description Ciprofibrate (CIP) is a highly lipophilic and poorly water-soluble drug, typically used for dyslipidemia treatment. Although it is already commercialized in capsules, no previous studies report its solid-state structure; thus, information about the correlation with its physicochemical properties is lacking. In parallel, recent studies have led to the improvement of drug administration, including encapsulation in polymeric nanoparticles (NPs). Here, we present CIP’s crystal structure determined by PXRD data. We also propose an encapsulation method for CIP in micelles produced from Pluronic P123/F127 and PEO-b-PCL, aiming to improve its solubility, hydrophilicity, and delivery. We determined the NPs’ physicochemical properties by DLS, SLS, ELS, SAXS and the loaded drug amount by UV-Vis spectroscopy. Micelles showed sizes around 10–20 nm for Pluronic and 35–45 nm for the PEO-b-PCL NPs with slightly negative surface charge and successful CIP loading, especially for the latter; a substantial reduction in ζ-potential may be evidenced. For Pluronic nanoparticles, we scanned different conditions for the CIP loading, and its encapsulation efficiency was reduced while the drug content increased in the nanoprecipitation protocol. We also performed in vitro release experiments; results demonstrate that probe release is driven by Fickian diffusion for the Pluronic NPs and a zero-order model for PEO-b-PCL NPs.
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spelling pubmed-84683972021-09-27 Ciprofibrate-Loaded Nanoparticles Prepared by Nanoprecipitation: Synthesis, Characterization, and Drug Release Corrêa, Raissa Lohanna Gomes Quintino dos Santos, Renan Albuquerque, Lindomar José Calumby de Araujo, Gabriel Lima Barros Edwards-Gayle, Charlotte Jennifer Chante Ferreira, Fabio Furlan Costa, Fanny Nascimento Polymers (Basel) Article Ciprofibrate (CIP) is a highly lipophilic and poorly water-soluble drug, typically used for dyslipidemia treatment. Although it is already commercialized in capsules, no previous studies report its solid-state structure; thus, information about the correlation with its physicochemical properties is lacking. In parallel, recent studies have led to the improvement of drug administration, including encapsulation in polymeric nanoparticles (NPs). Here, we present CIP’s crystal structure determined by PXRD data. We also propose an encapsulation method for CIP in micelles produced from Pluronic P123/F127 and PEO-b-PCL, aiming to improve its solubility, hydrophilicity, and delivery. We determined the NPs’ physicochemical properties by DLS, SLS, ELS, SAXS and the loaded drug amount by UV-Vis spectroscopy. Micelles showed sizes around 10–20 nm for Pluronic and 35–45 nm for the PEO-b-PCL NPs with slightly negative surface charge and successful CIP loading, especially for the latter; a substantial reduction in ζ-potential may be evidenced. For Pluronic nanoparticles, we scanned different conditions for the CIP loading, and its encapsulation efficiency was reduced while the drug content increased in the nanoprecipitation protocol. We also performed in vitro release experiments; results demonstrate that probe release is driven by Fickian diffusion for the Pluronic NPs and a zero-order model for PEO-b-PCL NPs. MDPI 2021-09-18 /pmc/articles/PMC8468397/ /pubmed/34578074 http://dx.doi.org/10.3390/polym13183158 Text en © 2021 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
Corrêa, Raissa Lohanna Gomes Quintino
dos Santos, Renan
Albuquerque, Lindomar José Calumby
de Araujo, Gabriel Lima Barros
Edwards-Gayle, Charlotte Jennifer Chante
Ferreira, Fabio Furlan
Costa, Fanny Nascimento
Ciprofibrate-Loaded Nanoparticles Prepared by Nanoprecipitation: Synthesis, Characterization, and Drug Release
title Ciprofibrate-Loaded Nanoparticles Prepared by Nanoprecipitation: Synthesis, Characterization, and Drug Release
title_full Ciprofibrate-Loaded Nanoparticles Prepared by Nanoprecipitation: Synthesis, Characterization, and Drug Release
title_fullStr Ciprofibrate-Loaded Nanoparticles Prepared by Nanoprecipitation: Synthesis, Characterization, and Drug Release
title_full_unstemmed Ciprofibrate-Loaded Nanoparticles Prepared by Nanoprecipitation: Synthesis, Characterization, and Drug Release
title_short Ciprofibrate-Loaded Nanoparticles Prepared by Nanoprecipitation: Synthesis, Characterization, and Drug Release
title_sort ciprofibrate-loaded nanoparticles prepared by nanoprecipitation: synthesis, characterization, and drug release
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8468397/
https://www.ncbi.nlm.nih.gov/pubmed/34578074
http://dx.doi.org/10.3390/polym13183158
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