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Tissue Engineered Esophageal Patch by Mesenchymal Stromal Cells: Optimization of Electrospun Patch Engineering

Aim of work was to locate a simple, reproducible protocol for uniform seeding and optimal cellularization of biodegradable patch minimizing the risk of structural damages of patch and its contamination in long-term culture. Two seeding procedures are exploited, namely static seeding procedures on bi...

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Autores principales: Pisani, Silvia, Croce, Stefania, Chiesa, Enrica, Dorati, Rossella, Lenta, Elisa, Genta, Ida, Bruni, Giovanna, Mauramati, Simone, Benazzo, Alberto, Cobianchi, Lorenzo, Morbini, Patrizia, Caliogna, Laura, Benazzo, Marco, Avanzini, Maria Antonietta, Conti, Bice
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084816/
https://www.ncbi.nlm.nih.gov/pubmed/32143536
http://dx.doi.org/10.3390/ijms21051764
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author Pisani, Silvia
Croce, Stefania
Chiesa, Enrica
Dorati, Rossella
Lenta, Elisa
Genta, Ida
Bruni, Giovanna
Mauramati, Simone
Benazzo, Alberto
Cobianchi, Lorenzo
Morbini, Patrizia
Caliogna, Laura
Benazzo, Marco
Avanzini, Maria Antonietta
Conti, Bice
author_facet Pisani, Silvia
Croce, Stefania
Chiesa, Enrica
Dorati, Rossella
Lenta, Elisa
Genta, Ida
Bruni, Giovanna
Mauramati, Simone
Benazzo, Alberto
Cobianchi, Lorenzo
Morbini, Patrizia
Caliogna, Laura
Benazzo, Marco
Avanzini, Maria Antonietta
Conti, Bice
author_sort Pisani, Silvia
collection PubMed
description Aim of work was to locate a simple, reproducible protocol for uniform seeding and optimal cellularization of biodegradable patch minimizing the risk of structural damages of patch and its contamination in long-term culture. Two seeding procedures are exploited, namely static seeding procedures on biodegradable and biocompatible patches incubated as free floating (floating conditions) or supported by CellCrown(TM) insert (fixed conditions) and engineered by porcine bone marrow MSCs (p-MSCs). Scaffold prototypes having specific structural features with regard to pore size, pore orientation, porosity, and pore distribution were produced using two different techniques, such as temperature-induced precipitation method and electrospinning technology. The investigation on different prototypes allowed achieving several implementations in terms of cell distribution uniformity, seeding efficiency, and cellularization timing. The cell seeding protocol in stating conditions demonstrated to be the most suitable method, as these conditions successfully improved the cellularization of polymeric patches. Furthermore, the investigation provided interesting information on patches’ stability in physiological simulating experimental conditions. Considering the in vitro results, it can be stated that the in vitro protocol proposed for patches cellularization is suitable to achieve homogeneous and complete cellularizations of patch. Moreover, the protocol turned out to be simple, repeatable, and reproducible.
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spelling pubmed-70848162020-03-23 Tissue Engineered Esophageal Patch by Mesenchymal Stromal Cells: Optimization of Electrospun Patch Engineering Pisani, Silvia Croce, Stefania Chiesa, Enrica Dorati, Rossella Lenta, Elisa Genta, Ida Bruni, Giovanna Mauramati, Simone Benazzo, Alberto Cobianchi, Lorenzo Morbini, Patrizia Caliogna, Laura Benazzo, Marco Avanzini, Maria Antonietta Conti, Bice Int J Mol Sci Article Aim of work was to locate a simple, reproducible protocol for uniform seeding and optimal cellularization of biodegradable patch minimizing the risk of structural damages of patch and its contamination in long-term culture. Two seeding procedures are exploited, namely static seeding procedures on biodegradable and biocompatible patches incubated as free floating (floating conditions) or supported by CellCrown(TM) insert (fixed conditions) and engineered by porcine bone marrow MSCs (p-MSCs). Scaffold prototypes having specific structural features with regard to pore size, pore orientation, porosity, and pore distribution were produced using two different techniques, such as temperature-induced precipitation method and electrospinning technology. The investigation on different prototypes allowed achieving several implementations in terms of cell distribution uniformity, seeding efficiency, and cellularization timing. The cell seeding protocol in stating conditions demonstrated to be the most suitable method, as these conditions successfully improved the cellularization of polymeric patches. Furthermore, the investigation provided interesting information on patches’ stability in physiological simulating experimental conditions. Considering the in vitro results, it can be stated that the in vitro protocol proposed for patches cellularization is suitable to achieve homogeneous and complete cellularizations of patch. Moreover, the protocol turned out to be simple, repeatable, and reproducible. MDPI 2020-03-04 /pmc/articles/PMC7084816/ /pubmed/32143536 http://dx.doi.org/10.3390/ijms21051764 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
Pisani, Silvia
Croce, Stefania
Chiesa, Enrica
Dorati, Rossella
Lenta, Elisa
Genta, Ida
Bruni, Giovanna
Mauramati, Simone
Benazzo, Alberto
Cobianchi, Lorenzo
Morbini, Patrizia
Caliogna, Laura
Benazzo, Marco
Avanzini, Maria Antonietta
Conti, Bice
Tissue Engineered Esophageal Patch by Mesenchymal Stromal Cells: Optimization of Electrospun Patch Engineering
title Tissue Engineered Esophageal Patch by Mesenchymal Stromal Cells: Optimization of Electrospun Patch Engineering
title_full Tissue Engineered Esophageal Patch by Mesenchymal Stromal Cells: Optimization of Electrospun Patch Engineering
title_fullStr Tissue Engineered Esophageal Patch by Mesenchymal Stromal Cells: Optimization of Electrospun Patch Engineering
title_full_unstemmed Tissue Engineered Esophageal Patch by Mesenchymal Stromal Cells: Optimization of Electrospun Patch Engineering
title_short Tissue Engineered Esophageal Patch by Mesenchymal Stromal Cells: Optimization of Electrospun Patch Engineering
title_sort tissue engineered esophageal patch by mesenchymal stromal cells: optimization of electrospun patch engineering
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084816/
https://www.ncbi.nlm.nih.gov/pubmed/32143536
http://dx.doi.org/10.3390/ijms21051764
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