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Biopharmaceutical Assessment of Dexamethasone Acetate-Based Hydrogels Combining Hydroxypropyl Cyclodextrins and Polysaccharides for Ocular Delivery

We previously developed two optimized formulations of dexamethasone acetate (DXMa) hydrogels by means of special cubic mixture designs for topical ocular administration. These gels were elaborated with hydroxypropyl-β-CD (HPβCD) and hydroxypropyl-γ-CD (HPγCD) and commercial hydrogels in order to enh...

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Autores principales: Mazet, Roseline, García-Otero, Xurxo, Choisnard, Luc, Wouessidjewe, Denis, Verdoot, Vincent, Bossard, Frédéric, Díaz-Tomé, Victoria, Blanc-Marquis, Véronique, Otero-Espinar, Francisco-Javier, Fernandez-Ferreiro, Anxo, Gèze, Annabelle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464375/
https://www.ncbi.nlm.nih.gov/pubmed/32751583
http://dx.doi.org/10.3390/pharmaceutics12080717
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author Mazet, Roseline
García-Otero, Xurxo
Choisnard, Luc
Wouessidjewe, Denis
Verdoot, Vincent
Bossard, Frédéric
Díaz-Tomé, Victoria
Blanc-Marquis, Véronique
Otero-Espinar, Francisco-Javier
Fernandez-Ferreiro, Anxo
Gèze, Annabelle
author_facet Mazet, Roseline
García-Otero, Xurxo
Choisnard, Luc
Wouessidjewe, Denis
Verdoot, Vincent
Bossard, Frédéric
Díaz-Tomé, Victoria
Blanc-Marquis, Véronique
Otero-Espinar, Francisco-Javier
Fernandez-Ferreiro, Anxo
Gèze, Annabelle
author_sort Mazet, Roseline
collection PubMed
description We previously developed two optimized formulations of dexamethasone acetate (DXMa) hydrogels by means of special cubic mixture designs for topical ocular administration. These gels were elaborated with hydroxypropyl-β-CD (HPβCD) and hydroxypropyl-γ-CD (HPγCD) and commercial hydrogels in order to enhance DXMa water solubility and finally DXMa’s ocular bioavailability and transcorneal penetration. The main objective of this study was to characterize them and to evaluate in vitro, ex vivo, and in vivo their safety, biopermanence, and transcorneal permeation. Gels A and B are Newtonian fluids and display a viscosity of 13.2 mPa.s and 18.6 mPa.s, respectively, which increases their ocular retention, according to the in vivo biopermanence study by PET/CT. These hydrogels could act as corneal absorption promoters as they allow a higher transcorneal permeation of DXMa through porcine excised cornea, compared to DEXAFREE(®) and MAXIDEX(®). Cytotoxicity assays showed no cytotoxic effects on human primary corneal epithelial cells (HCE). Furthermore, Gel B is clearly safe for the eye, but the effect of Gel A on the human eye cannot be predicted. Both gels were also stable 12 months at 25 °C after sterilization by filtration. These results demonstrate that the developed formulations present a high potential for the topical ocular administration of dexamethasone acetate.
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spelling pubmed-74643752020-09-04 Biopharmaceutical Assessment of Dexamethasone Acetate-Based Hydrogels Combining Hydroxypropyl Cyclodextrins and Polysaccharides for Ocular Delivery Mazet, Roseline García-Otero, Xurxo Choisnard, Luc Wouessidjewe, Denis Verdoot, Vincent Bossard, Frédéric Díaz-Tomé, Victoria Blanc-Marquis, Véronique Otero-Espinar, Francisco-Javier Fernandez-Ferreiro, Anxo Gèze, Annabelle Pharmaceutics Article We previously developed two optimized formulations of dexamethasone acetate (DXMa) hydrogels by means of special cubic mixture designs for topical ocular administration. These gels were elaborated with hydroxypropyl-β-CD (HPβCD) and hydroxypropyl-γ-CD (HPγCD) and commercial hydrogels in order to enhance DXMa water solubility and finally DXMa’s ocular bioavailability and transcorneal penetration. The main objective of this study was to characterize them and to evaluate in vitro, ex vivo, and in vivo their safety, biopermanence, and transcorneal permeation. Gels A and B are Newtonian fluids and display a viscosity of 13.2 mPa.s and 18.6 mPa.s, respectively, which increases their ocular retention, according to the in vivo biopermanence study by PET/CT. These hydrogels could act as corneal absorption promoters as they allow a higher transcorneal permeation of DXMa through porcine excised cornea, compared to DEXAFREE(®) and MAXIDEX(®). Cytotoxicity assays showed no cytotoxic effects on human primary corneal epithelial cells (HCE). Furthermore, Gel B is clearly safe for the eye, but the effect of Gel A on the human eye cannot be predicted. Both gels were also stable 12 months at 25 °C after sterilization by filtration. These results demonstrate that the developed formulations present a high potential for the topical ocular administration of dexamethasone acetate. MDPI 2020-07-30 /pmc/articles/PMC7464375/ /pubmed/32751583 http://dx.doi.org/10.3390/pharmaceutics12080717 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mazet, Roseline
García-Otero, Xurxo
Choisnard, Luc
Wouessidjewe, Denis
Verdoot, Vincent
Bossard, Frédéric
Díaz-Tomé, Victoria
Blanc-Marquis, Véronique
Otero-Espinar, Francisco-Javier
Fernandez-Ferreiro, Anxo
Gèze, Annabelle
Biopharmaceutical Assessment of Dexamethasone Acetate-Based Hydrogels Combining Hydroxypropyl Cyclodextrins and Polysaccharides for Ocular Delivery
title Biopharmaceutical Assessment of Dexamethasone Acetate-Based Hydrogels Combining Hydroxypropyl Cyclodextrins and Polysaccharides for Ocular Delivery
title_full Biopharmaceutical Assessment of Dexamethasone Acetate-Based Hydrogels Combining Hydroxypropyl Cyclodextrins and Polysaccharides for Ocular Delivery
title_fullStr Biopharmaceutical Assessment of Dexamethasone Acetate-Based Hydrogels Combining Hydroxypropyl Cyclodextrins and Polysaccharides for Ocular Delivery
title_full_unstemmed Biopharmaceutical Assessment of Dexamethasone Acetate-Based Hydrogels Combining Hydroxypropyl Cyclodextrins and Polysaccharides for Ocular Delivery
title_short Biopharmaceutical Assessment of Dexamethasone Acetate-Based Hydrogels Combining Hydroxypropyl Cyclodextrins and Polysaccharides for Ocular Delivery
title_sort biopharmaceutical assessment of dexamethasone acetate-based hydrogels combining hydroxypropyl cyclodextrins and polysaccharides for ocular delivery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464375/
https://www.ncbi.nlm.nih.gov/pubmed/32751583
http://dx.doi.org/10.3390/pharmaceutics12080717
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