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Gellan-Based Composite System as a Potential Tool for the Treatment of Nervous Tissue Injuries: Cross-Linked Electrospun Nanofibers Embedded in a RC-33-Loaded Freeze-Dried Matrix

Injuries to the nervous system affect more than one billion people worldwide, and dramatically impact on the patient’s quality of life. The present work aimed to design and develop a gellan gum (GG)-based composite system for the local delivery of the neuroprotective sigma-1 receptor agonist, 1-[3-(...

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Autores principales: Vigani, Barbara, Valentino, Caterina, Cavalloro, Valeria, Catenacci, Laura, Sorrenti, Milena, Sandri, Giuseppina, Bonferoni, Maria Cristina, Bozzi, Chiara, Collina, Simona, Rossi, Silvia, Ferrari, Franca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7912322/
https://www.ncbi.nlm.nih.gov/pubmed/33530643
http://dx.doi.org/10.3390/pharmaceutics13020164
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author Vigani, Barbara
Valentino, Caterina
Cavalloro, Valeria
Catenacci, Laura
Sorrenti, Milena
Sandri, Giuseppina
Bonferoni, Maria Cristina
Bozzi, Chiara
Collina, Simona
Rossi, Silvia
Ferrari, Franca
author_facet Vigani, Barbara
Valentino, Caterina
Cavalloro, Valeria
Catenacci, Laura
Sorrenti, Milena
Sandri, Giuseppina
Bonferoni, Maria Cristina
Bozzi, Chiara
Collina, Simona
Rossi, Silvia
Ferrari, Franca
author_sort Vigani, Barbara
collection PubMed
description Injuries to the nervous system affect more than one billion people worldwide, and dramatically impact on the patient’s quality of life. The present work aimed to design and develop a gellan gum (GG)-based composite system for the local delivery of the neuroprotective sigma-1 receptor agonist, 1-[3-(1,1′-biphen)-4-yl] butylpiperidine (RC-33), as a potential tool for the treatment of tissue nervous injuries. The system, consisting of cross-linked electrospun nanofibers embedded in a RC-33-loaded freeze-dried matrix, was designed to bridge the lesion gap, control drug delivery and enhance axonal regrowth. The gradual matrix degradation should ensure the progressive interaction between the inner fibrous mat and the surrounding cellular environment. Nanofibers, prepared by electrospinning polymeric solutions containing GG, two different grades of poly (ethylene oxide) and poloxamer, were cross-linked with calcium ions. GG-based matrices, loaded with different amounts of RC-33, were prepared by freeze-drying. Dialysis studies and solid-state characterization pointed out the formation of an interaction product between GG and RC-33. RC-33-loaded freeze-dried matrices were characterized by the capability to absorb a high buffer content, forming a gel with marked viscoelastic properties, and by RC-33 controlled release properties. The presence of cross-linked nanofibers increased matrix mechanical resistance.
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spelling pubmed-79123222021-02-28 Gellan-Based Composite System as a Potential Tool for the Treatment of Nervous Tissue Injuries: Cross-Linked Electrospun Nanofibers Embedded in a RC-33-Loaded Freeze-Dried Matrix Vigani, Barbara Valentino, Caterina Cavalloro, Valeria Catenacci, Laura Sorrenti, Milena Sandri, Giuseppina Bonferoni, Maria Cristina Bozzi, Chiara Collina, Simona Rossi, Silvia Ferrari, Franca Pharmaceutics Article Injuries to the nervous system affect more than one billion people worldwide, and dramatically impact on the patient’s quality of life. The present work aimed to design and develop a gellan gum (GG)-based composite system for the local delivery of the neuroprotective sigma-1 receptor agonist, 1-[3-(1,1′-biphen)-4-yl] butylpiperidine (RC-33), as a potential tool for the treatment of tissue nervous injuries. The system, consisting of cross-linked electrospun nanofibers embedded in a RC-33-loaded freeze-dried matrix, was designed to bridge the lesion gap, control drug delivery and enhance axonal regrowth. The gradual matrix degradation should ensure the progressive interaction between the inner fibrous mat and the surrounding cellular environment. Nanofibers, prepared by electrospinning polymeric solutions containing GG, two different grades of poly (ethylene oxide) and poloxamer, were cross-linked with calcium ions. GG-based matrices, loaded with different amounts of RC-33, were prepared by freeze-drying. Dialysis studies and solid-state characterization pointed out the formation of an interaction product between GG and RC-33. RC-33-loaded freeze-dried matrices were characterized by the capability to absorb a high buffer content, forming a gel with marked viscoelastic properties, and by RC-33 controlled release properties. The presence of cross-linked nanofibers increased matrix mechanical resistance. MDPI 2021-01-26 /pmc/articles/PMC7912322/ /pubmed/33530643 http://dx.doi.org/10.3390/pharmaceutics13020164 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
Vigani, Barbara
Valentino, Caterina
Cavalloro, Valeria
Catenacci, Laura
Sorrenti, Milena
Sandri, Giuseppina
Bonferoni, Maria Cristina
Bozzi, Chiara
Collina, Simona
Rossi, Silvia
Ferrari, Franca
Gellan-Based Composite System as a Potential Tool for the Treatment of Nervous Tissue Injuries: Cross-Linked Electrospun Nanofibers Embedded in a RC-33-Loaded Freeze-Dried Matrix
title Gellan-Based Composite System as a Potential Tool for the Treatment of Nervous Tissue Injuries: Cross-Linked Electrospun Nanofibers Embedded in a RC-33-Loaded Freeze-Dried Matrix
title_full Gellan-Based Composite System as a Potential Tool for the Treatment of Nervous Tissue Injuries: Cross-Linked Electrospun Nanofibers Embedded in a RC-33-Loaded Freeze-Dried Matrix
title_fullStr Gellan-Based Composite System as a Potential Tool for the Treatment of Nervous Tissue Injuries: Cross-Linked Electrospun Nanofibers Embedded in a RC-33-Loaded Freeze-Dried Matrix
title_full_unstemmed Gellan-Based Composite System as a Potential Tool for the Treatment of Nervous Tissue Injuries: Cross-Linked Electrospun Nanofibers Embedded in a RC-33-Loaded Freeze-Dried Matrix
title_short Gellan-Based Composite System as a Potential Tool for the Treatment of Nervous Tissue Injuries: Cross-Linked Electrospun Nanofibers Embedded in a RC-33-Loaded Freeze-Dried Matrix
title_sort gellan-based composite system as a potential tool for the treatment of nervous tissue injuries: cross-linked electrospun nanofibers embedded in a rc-33-loaded freeze-dried matrix
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7912322/
https://www.ncbi.nlm.nih.gov/pubmed/33530643
http://dx.doi.org/10.3390/pharmaceutics13020164
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