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Chitosan/Cyclodextrin Nanospheres for Potential Nose-to-Brain Targeting of Idebenone

Idebenone (IDE) is a powerful antioxidant that is potentially active towards cerebral diseases, but its low water solubility and fast first pass metabolism reduce its accumulation in the brain, making it ineffective. In this work, we developed cyclodextrin-based chitosan nanospheres (CS NPs) as pote...

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Autores principales: De Gaetano, Federica, d’Avanzo, Nicola, Mancuso, Antonia, De Gaetano, Anna, Paladini, Giuseppe, Caridi, Francesco, Venuti, Valentina, Paolino, Donatella, Ventura, Cinzia Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9612377/
https://www.ncbi.nlm.nih.gov/pubmed/36297318
http://dx.doi.org/10.3390/ph15101206
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author De Gaetano, Federica
d’Avanzo, Nicola
Mancuso, Antonia
De Gaetano, Anna
Paladini, Giuseppe
Caridi, Francesco
Venuti, Valentina
Paolino, Donatella
Ventura, Cinzia Anna
author_facet De Gaetano, Federica
d’Avanzo, Nicola
Mancuso, Antonia
De Gaetano, Anna
Paladini, Giuseppe
Caridi, Francesco
Venuti, Valentina
Paolino, Donatella
Ventura, Cinzia Anna
author_sort De Gaetano, Federica
collection PubMed
description Idebenone (IDE) is a powerful antioxidant that is potentially active towards cerebral diseases, but its low water solubility and fast first pass metabolism reduce its accumulation in the brain, making it ineffective. In this work, we developed cyclodextrin-based chitosan nanospheres (CS NPs) as potential carriers for nose-to-brain targeting of IDE. Sulfobutylether-β-cyclodextrin (SBE-β-CD) was used as a polyanion for chitosan (CS) and as a complexing agent for IDE, permitting its encapsulation into nanospheres (NPs) produced in an aqueous solution. Overloading NPs were obtained by adding the soluble IDE/hydroxypropyl-β-CD (IDE/HP-β-CD) inclusion complex into the CS or SBE-β-CD solutions. We obtained homogeneous CS NPs with a hydrodynamic radius of about 140 nm, positive zeta potential (about +28 mV), and good encapsulation efficiency and drug loading, particularly for overloaded NPs. A biphasic release of IDE, finished within 48 h, was observed from overloaded NPs, whilst non-overloaded CS NPs produced a prolonged release, without a burst effect. In vitro biological studies showed the ability of CS NPs to preserve the antioxidant activity of IDE on U373 culture cells. Furthermore, Fourier transform infrared spectroscopy (FT-IR) demonstrated the ability of CS NPs to interact with the excised bovine nasal mucosa, improving the permeation of the drug and potentially favoring its accumulation in the brain.
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spelling pubmed-96123772022-10-28 Chitosan/Cyclodextrin Nanospheres for Potential Nose-to-Brain Targeting of Idebenone De Gaetano, Federica d’Avanzo, Nicola Mancuso, Antonia De Gaetano, Anna Paladini, Giuseppe Caridi, Francesco Venuti, Valentina Paolino, Donatella Ventura, Cinzia Anna Pharmaceuticals (Basel) Article Idebenone (IDE) is a powerful antioxidant that is potentially active towards cerebral diseases, but its low water solubility and fast first pass metabolism reduce its accumulation in the brain, making it ineffective. In this work, we developed cyclodextrin-based chitosan nanospheres (CS NPs) as potential carriers for nose-to-brain targeting of IDE. Sulfobutylether-β-cyclodextrin (SBE-β-CD) was used as a polyanion for chitosan (CS) and as a complexing agent for IDE, permitting its encapsulation into nanospheres (NPs) produced in an aqueous solution. Overloading NPs were obtained by adding the soluble IDE/hydroxypropyl-β-CD (IDE/HP-β-CD) inclusion complex into the CS or SBE-β-CD solutions. We obtained homogeneous CS NPs with a hydrodynamic radius of about 140 nm, positive zeta potential (about +28 mV), and good encapsulation efficiency and drug loading, particularly for overloaded NPs. A biphasic release of IDE, finished within 48 h, was observed from overloaded NPs, whilst non-overloaded CS NPs produced a prolonged release, without a burst effect. In vitro biological studies showed the ability of CS NPs to preserve the antioxidant activity of IDE on U373 culture cells. Furthermore, Fourier transform infrared spectroscopy (FT-IR) demonstrated the ability of CS NPs to interact with the excised bovine nasal mucosa, improving the permeation of the drug and potentially favoring its accumulation in the brain. MDPI 2022-09-28 /pmc/articles/PMC9612377/ /pubmed/36297318 http://dx.doi.org/10.3390/ph15101206 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
De Gaetano, Federica
d’Avanzo, Nicola
Mancuso, Antonia
De Gaetano, Anna
Paladini, Giuseppe
Caridi, Francesco
Venuti, Valentina
Paolino, Donatella
Ventura, Cinzia Anna
Chitosan/Cyclodextrin Nanospheres for Potential Nose-to-Brain Targeting of Idebenone
title Chitosan/Cyclodextrin Nanospheres for Potential Nose-to-Brain Targeting of Idebenone
title_full Chitosan/Cyclodextrin Nanospheres for Potential Nose-to-Brain Targeting of Idebenone
title_fullStr Chitosan/Cyclodextrin Nanospheres for Potential Nose-to-Brain Targeting of Idebenone
title_full_unstemmed Chitosan/Cyclodextrin Nanospheres for Potential Nose-to-Brain Targeting of Idebenone
title_short Chitosan/Cyclodextrin Nanospheres for Potential Nose-to-Brain Targeting of Idebenone
title_sort chitosan/cyclodextrin nanospheres for potential nose-to-brain targeting of idebenone
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9612377/
https://www.ncbi.nlm.nih.gov/pubmed/36297318
http://dx.doi.org/10.3390/ph15101206
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