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Quality-by-Design-Based Development of n-Propyl-Gallate-Loaded Hyaluronic-Acid-Coated Liposomes for Intranasal Administration

The present study aimed to develop n-propyl gallate (PG)-encapsulated liposomes through a novel direct pouring method using the quality-by-design (QbD) approach. A further aim was to coat liposomes with hyaluronic acid (HA) to improve the stability of the formulation in nasal mucosa. The QbD method...

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Autores principales: Sabir, Fakhara, Katona, Gábor, Pallagi, Edina, Dobó, Dorina Gabriella, Akel, Hussein, Berkesi, Dániel, Kónya, Zoltán, Csóka, Ildikó
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961673/
https://www.ncbi.nlm.nih.gov/pubmed/33800788
http://dx.doi.org/10.3390/molecules26051429
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author Sabir, Fakhara
Katona, Gábor
Pallagi, Edina
Dobó, Dorina Gabriella
Akel, Hussein
Berkesi, Dániel
Kónya, Zoltán
Csóka, Ildikó
author_facet Sabir, Fakhara
Katona, Gábor
Pallagi, Edina
Dobó, Dorina Gabriella
Akel, Hussein
Berkesi, Dániel
Kónya, Zoltán
Csóka, Ildikó
author_sort Sabir, Fakhara
collection PubMed
description The present study aimed to develop n-propyl gallate (PG)-encapsulated liposomes through a novel direct pouring method using the quality-by-design (QbD) approach. A further aim was to coat liposomes with hyaluronic acid (HA) to improve the stability of the formulation in nasal mucosa. The QbD method was used for the determination of critical quality attributes in the formulation of PG-loaded liposomes coated with HA. The optimized formulation was determined by applying the Box–Behnken design to investigate the effect of composition and process variables on particle size, polydispersity index (PDI), and zeta potential. Physiochemical characterization, in vitro release, and permeability tests, as well as accelerated stability studies, were performed with the optimized liposomal formulation. The optimized formulation resulted in 90 ± 3.6% encapsulation efficiency, 167.9 ± 3.5 nm average hydrodynamic diameter, 0.129 ± 0.002 PDI, and −33.9 ± 4.5 zeta potential. Coated liposomes showed significantly improved properties in 24 h in an in vitro release test (>60%), in vitro permeability measurement (420 μg/cm(2)) within 60 min, and also in accelerated stability studies compared to uncoated liposomes. A hydrogen-peroxide-scavenging assay showed improved stability of PG-containing liposomes. It can be concluded that the optimization of PG-encapsulated liposomes coated with HA has great potential for targeting several brain diseases.
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spelling pubmed-79616732021-03-17 Quality-by-Design-Based Development of n-Propyl-Gallate-Loaded Hyaluronic-Acid-Coated Liposomes for Intranasal Administration Sabir, Fakhara Katona, Gábor Pallagi, Edina Dobó, Dorina Gabriella Akel, Hussein Berkesi, Dániel Kónya, Zoltán Csóka, Ildikó Molecules Article The present study aimed to develop n-propyl gallate (PG)-encapsulated liposomes through a novel direct pouring method using the quality-by-design (QbD) approach. A further aim was to coat liposomes with hyaluronic acid (HA) to improve the stability of the formulation in nasal mucosa. The QbD method was used for the determination of critical quality attributes in the formulation of PG-loaded liposomes coated with HA. The optimized formulation was determined by applying the Box–Behnken design to investigate the effect of composition and process variables on particle size, polydispersity index (PDI), and zeta potential. Physiochemical characterization, in vitro release, and permeability tests, as well as accelerated stability studies, were performed with the optimized liposomal formulation. The optimized formulation resulted in 90 ± 3.6% encapsulation efficiency, 167.9 ± 3.5 nm average hydrodynamic diameter, 0.129 ± 0.002 PDI, and −33.9 ± 4.5 zeta potential. Coated liposomes showed significantly improved properties in 24 h in an in vitro release test (>60%), in vitro permeability measurement (420 μg/cm(2)) within 60 min, and also in accelerated stability studies compared to uncoated liposomes. A hydrogen-peroxide-scavenging assay showed improved stability of PG-containing liposomes. It can be concluded that the optimization of PG-encapsulated liposomes coated with HA has great potential for targeting several brain diseases. MDPI 2021-03-06 /pmc/articles/PMC7961673/ /pubmed/33800788 http://dx.doi.org/10.3390/molecules26051429 Text en © 2021 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
Sabir, Fakhara
Katona, Gábor
Pallagi, Edina
Dobó, Dorina Gabriella
Akel, Hussein
Berkesi, Dániel
Kónya, Zoltán
Csóka, Ildikó
Quality-by-Design-Based Development of n-Propyl-Gallate-Loaded Hyaluronic-Acid-Coated Liposomes for Intranasal Administration
title Quality-by-Design-Based Development of n-Propyl-Gallate-Loaded Hyaluronic-Acid-Coated Liposomes for Intranasal Administration
title_full Quality-by-Design-Based Development of n-Propyl-Gallate-Loaded Hyaluronic-Acid-Coated Liposomes for Intranasal Administration
title_fullStr Quality-by-Design-Based Development of n-Propyl-Gallate-Loaded Hyaluronic-Acid-Coated Liposomes for Intranasal Administration
title_full_unstemmed Quality-by-Design-Based Development of n-Propyl-Gallate-Loaded Hyaluronic-Acid-Coated Liposomes for Intranasal Administration
title_short Quality-by-Design-Based Development of n-Propyl-Gallate-Loaded Hyaluronic-Acid-Coated Liposomes for Intranasal Administration
title_sort quality-by-design-based development of n-propyl-gallate-loaded hyaluronic-acid-coated liposomes for intranasal administration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961673/
https://www.ncbi.nlm.nih.gov/pubmed/33800788
http://dx.doi.org/10.3390/molecules26051429
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