Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applications

Detalhes bibliográficos
Autor(a) principal: Guimarães, Ana Cristina Silva Esperança
Data de Publicação: 2010
Outros Autores: Martins, Albino, Pinho, Elisabete D., Faria, Susana, Reis, R. L., Neves, N. M.
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)
Texto Completo: http://hdl.handle.net/1822/20427
Resumo: AIM: Utilize the dual composition strategy to increase the pore size and solve the low cell infiltration capacity on random nanofiber meshes, an intrinsic limitation of electrospun scaffolds for tissue engineering applications. MATERIALS & METHODS: Polycaprolactone and poly(ethylene oxide) solutions were electrospun simultaneously to obtain a dual composition nanofiber mesh. Selective dissolution of the poly(ethylene oxide) nanofiber fraction was performed. The biologic performance of these enhanced pore size nanofibrous structures was assessed with human osteoblastic cells. RESULTS: The electrospun nanofiber meshes, after the poly(ethylene oxide) dissolution, showed statistically significant larger pore sizes when compared with polycaprolactone nanofiber meshes with a similar polycaprolactone volume fraction. This was also confirmed by interferometric optical profilometry. Using scanning electron microscopy and laser scanning confocal microscopy, it was observed that osteoblastic cells could penetrate into the nanofibrous structure and migrate into the opposite and unseeded side of the mesh. CONCLUSION: An electrospun mesh was created with sufficient pore size to allow cell infiltration into its structure, thus resulting in a fully populated construct appropriate for 3D tissue engineering applications.
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spelling Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applicationsbiodegradable scaffoldcell penetrationelectrospun nanofiber meshpore sizetissue enginneringScience & TechnologyAIM: Utilize the dual composition strategy to increase the pore size and solve the low cell infiltration capacity on random nanofiber meshes, an intrinsic limitation of electrospun scaffolds for tissue engineering applications. MATERIALS & METHODS: Polycaprolactone and poly(ethylene oxide) solutions were electrospun simultaneously to obtain a dual composition nanofiber mesh. Selective dissolution of the poly(ethylene oxide) nanofiber fraction was performed. The biologic performance of these enhanced pore size nanofibrous structures was assessed with human osteoblastic cells. RESULTS: The electrospun nanofiber meshes, after the poly(ethylene oxide) dissolution, showed statistically significant larger pore sizes when compared with polycaprolactone nanofiber meshes with a similar polycaprolactone volume fraction. This was also confirmed by interferometric optical profilometry. Using scanning electron microscopy and laser scanning confocal microscopy, it was observed that osteoblastic cells could penetrate into the nanofibrous structure and migrate into the opposite and unseeded side of the mesh. CONCLUSION: An electrospun mesh was created with sufficient pore size to allow cell infiltration into its structure, thus resulting in a fully populated construct appropriate for 3D tissue engineering applications.Future Medicine LtdUniversidade do MinhoGuimarães, Ana Cristina Silva EsperançaMartins, AlbinoPinho, Elisabete D.Faria, SusanaReis, R. L.Neves, N. M.20102010-01-01T00:00:00Zinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleapplication/pdfhttp://hdl.handle.net/1822/20427eng1743-588910.2217/NNM.10.3120528450info:eu-repo/semantics/openAccessreponame:Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)instname:Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãoinstacron:RCAAP2023-07-21T11:59:01Zoai:repositorium.sdum.uminho.pt:1822/20427Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireopendoar:71602024-03-19T18:48:47.019486Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos) - Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãofalse
dc.title.none.fl_str_mv Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applications
title Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applications
spellingShingle Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applications
Guimarães, Ana Cristina Silva Esperança
biodegradable scaffold
cell penetration
electrospun nanofiber mesh
pore size
tissue enginnering
Science & Technology
title_short Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applications
title_full Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applications
title_fullStr Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applications
title_full_unstemmed Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applications
title_sort Solving cell infiltration limitations of electrospun nanofiber meshes for tissue engineering applications
author Guimarães, Ana Cristina Silva Esperança
author_facet Guimarães, Ana Cristina Silva Esperança
Martins, Albino
Pinho, Elisabete D.
Faria, Susana
Reis, R. L.
Neves, N. M.
author_role author
author2 Martins, Albino
Pinho, Elisabete D.
Faria, Susana
Reis, R. L.
Neves, N. M.
author2_role author
author
author
author
author
dc.contributor.none.fl_str_mv Universidade do Minho
dc.contributor.author.fl_str_mv Guimarães, Ana Cristina Silva Esperança
Martins, Albino
Pinho, Elisabete D.
Faria, Susana
Reis, R. L.
Neves, N. M.
dc.subject.por.fl_str_mv biodegradable scaffold
cell penetration
electrospun nanofiber mesh
pore size
tissue enginnering
Science & Technology
topic biodegradable scaffold
cell penetration
electrospun nanofiber mesh
pore size
tissue enginnering
Science & Technology
description AIM: Utilize the dual composition strategy to increase the pore size and solve the low cell infiltration capacity on random nanofiber meshes, an intrinsic limitation of electrospun scaffolds for tissue engineering applications. MATERIALS & METHODS: Polycaprolactone and poly(ethylene oxide) solutions were electrospun simultaneously to obtain a dual composition nanofiber mesh. Selective dissolution of the poly(ethylene oxide) nanofiber fraction was performed. The biologic performance of these enhanced pore size nanofibrous structures was assessed with human osteoblastic cells. RESULTS: The electrospun nanofiber meshes, after the poly(ethylene oxide) dissolution, showed statistically significant larger pore sizes when compared with polycaprolactone nanofiber meshes with a similar polycaprolactone volume fraction. This was also confirmed by interferometric optical profilometry. Using scanning electron microscopy and laser scanning confocal microscopy, it was observed that osteoblastic cells could penetrate into the nanofibrous structure and migrate into the opposite and unseeded side of the mesh. CONCLUSION: An electrospun mesh was created with sufficient pore size to allow cell infiltration into its structure, thus resulting in a fully populated construct appropriate for 3D tissue engineering applications.
publishDate 2010
dc.date.none.fl_str_mv 2010
2010-01-01T00:00:00Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv http://hdl.handle.net/1822/20427
url http://hdl.handle.net/1822/20427
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv 1743-5889
10.2217/NNM.10.31
20528450
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Future Medicine Ltd
publisher.none.fl_str_mv Future Medicine Ltd
dc.source.none.fl_str_mv reponame:Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)
instname:Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informação
instacron:RCAAP
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