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Patterning of polymer nanofiber meshes by electrospinning for biomedical applications

The end-product of the electrospinning process is typically a randomly aligned fiber mesh or membrane. This is a result of the electric field generated between the drop of polymer solution at the needle and the collector. The developed electric field causes the stretching of the fibers and their ran...

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Autores principales: Neves, Nuno M, Campos, Rui, Pedro, Adriano, Cunha, José, Macedo, Francisco, Reis, Rui L
Formato: Texto
Lenguaje:English
Publicado: Dove Medical Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2676668/
https://www.ncbi.nlm.nih.gov/pubmed/18019842
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author Neves, Nuno M
Campos, Rui
Pedro, Adriano
Cunha, José
Macedo, Francisco
Reis, Rui L
author_facet Neves, Nuno M
Campos, Rui
Pedro, Adriano
Cunha, José
Macedo, Francisco
Reis, Rui L
author_sort Neves, Nuno M
collection PubMed
description The end-product of the electrospinning process is typically a randomly aligned fiber mesh or membrane. This is a result of the electric field generated between the drop of polymer solution at the needle and the collector. The developed electric field causes the stretching of the fibers and their random deposition. By judicious selection of the collector architecture, it is thus possible to develop other morphologies on the nanofiber meshes. The aim of this work is to prepare fiber meshes using various patterned collectors with specific dimensions and designs and to evaluate how those patterns can affect the properties of the meshes relevant to biomedical applications. This study aims at verifying whether it is possible to control the architecture of the fiber meshes by tailoring the geometry of the collector. Three different metallic collector topographies are used to test this hypothesis. Electrospun nonwoven patterned meshes of polyethylene oxide (PEO) and poly(ε-capro-lactone) (PCL) were successfully prepared. Those fiber meshes were analyzed by scanning electron microscopy (SEM). Both mechanical properties of the meshes and cell contacting experiments were performed to test the effect of the produced patterns over the properties of the meshes relevant for biomedical applications. The present study will evaluate cell adhesion sensitivity to the patterns generated and the effect of those patterns on the tensile properties of the fiber meshes.
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spelling pubmed-26766682009-05-12 Patterning of polymer nanofiber meshes by electrospinning for biomedical applications Neves, Nuno M Campos, Rui Pedro, Adriano Cunha, José Macedo, Francisco Reis, Rui L Int J Nanomedicine Original Research The end-product of the electrospinning process is typically a randomly aligned fiber mesh or membrane. This is a result of the electric field generated between the drop of polymer solution at the needle and the collector. The developed electric field causes the stretching of the fibers and their random deposition. By judicious selection of the collector architecture, it is thus possible to develop other morphologies on the nanofiber meshes. The aim of this work is to prepare fiber meshes using various patterned collectors with specific dimensions and designs and to evaluate how those patterns can affect the properties of the meshes relevant to biomedical applications. This study aims at verifying whether it is possible to control the architecture of the fiber meshes by tailoring the geometry of the collector. Three different metallic collector topographies are used to test this hypothesis. Electrospun nonwoven patterned meshes of polyethylene oxide (PEO) and poly(ε-capro-lactone) (PCL) were successfully prepared. Those fiber meshes were analyzed by scanning electron microscopy (SEM). Both mechanical properties of the meshes and cell contacting experiments were performed to test the effect of the produced patterns over the properties of the meshes relevant for biomedical applications. The present study will evaluate cell adhesion sensitivity to the patterns generated and the effect of those patterns on the tensile properties of the fiber meshes. Dove Medical Press 2007-09 2007-09 /pmc/articles/PMC2676668/ /pubmed/18019842 Text en © 2007 Dove Medical Press Limited. All rights reserved
spellingShingle Original Research
Neves, Nuno M
Campos, Rui
Pedro, Adriano
Cunha, José
Macedo, Francisco
Reis, Rui L
Patterning of polymer nanofiber meshes by electrospinning for biomedical applications
title Patterning of polymer nanofiber meshes by electrospinning for biomedical applications
title_full Patterning of polymer nanofiber meshes by electrospinning for biomedical applications
title_fullStr Patterning of polymer nanofiber meshes by electrospinning for biomedical applications
title_full_unstemmed Patterning of polymer nanofiber meshes by electrospinning for biomedical applications
title_short Patterning of polymer nanofiber meshes by electrospinning for biomedical applications
title_sort patterning of polymer nanofiber meshes by electrospinning for biomedical applications
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2676668/
https://www.ncbi.nlm.nih.gov/pubmed/18019842
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